TY - JOUR A1 - Zottnick, Sven H. A1 - Sprenger, Jan A. P. A1 - Finze, Maik A1 - Müller‐Buschbaum, Klaus T1 - Statistic Replacement of Lanthanide Ions in Bis‐salicylatoborate Coordination Polymers for the Deliberate Control of the Luminescence Chromaticity JF - ChemistryOpen N2 - Based on the strand‐like coordination polymer (CP) type \(^{1}\)\(_{∞}\)[Ln(BSB)\(_{3}\)(py)\(_{2}\)], [BSB]−=bis‐salicylatoborate anion, mixed Eu/Tb‐containing compounds of the constitution \(^{1}\)\(_{∞}\)[Eu\(_{x}\)Tb\(_{1-x}\)(BSB)\(_{3}\)(py)\(_{2}\)] were synthesised ionothermally for a phase width of (x=0.25–0.75) and characterized regarding structure and optical properties. Previously, known only for other lanthanides, the mixed 1D−Eu/Tb‐CPs show excellent options for statistic replacement of the Ln‐cations during synthesis yielding solid solutions. The products are highly luminescent, with the chromaticity being a direct function of the amount of the respective Ln‐ions. Corresponding to an overall addition of emission intensities, the green Tb\(^{3+}\) emission and the red Eu\(^{3+}\) emission allow for a chromaticity control that also includes yellow emission. Control of the luminescence colour renders them suitable examples of the versatility of statistic replacement of metal ions in coordination chemistry. In addition, crystallization of [EMIm]\(_{2}\)[YCl\(_{5}\)(py)] illuminates possible other products of the ionothermal reactions of [EMIm][BSB] with LnCl\(_{3}\) constituted by components not being part of the main CPs. KW - borates KW - coordination polymers KW - ionic liquids KW - lanthanides KW - luminescence Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-239953 VL - 10 IS - 2 SP - 164 EP - 170 ER - TY - JOUR A1 - Zhang, Xiaolei A1 - Friedrich, Alexandra A1 - Marder, Todd B. T1 - Copper-Catalyzed Borylation of Acyl Chlorides with an Alkoxy Diboron Reagent: A Facile Route to Acylboron Compounds JF - Chemistry—A European Journal N2 - Herein, the copper-catalyzed borylation of readily available acyl chlorides with bis(pinacolato)diboron, (B\(_{2}\)pin\(_{2}\)) or bis(neopentane glycolato)diboron (B\(_{2}\)neop\(_{2}\)) is reported, which provides stable potassium acyltrifluoroborates (KATs) in good yields from the acylboronate esters. A variety of functional groups are tolerated under the mild reaction conditions (room temperature) and substrates containing different carbon-skeletons, such as aryl, heteroaryl and primary, secondary, tertiary alkyl are applicable. Acyl N-methyliminodiacetic acid (MIDA) boronates can also been accessed by modification of the workup procedures. This process is scalable and also amenable to the late-stage conversion of carboxylic acid-containing drugs into their acylboron analogues, which have been challenging to prepare previously. A catalytic mechanism is proposed based on in situ monitoring of the reaction between p-toluoyl chloride and an NHC-copper(I) boryl complex as well as the isolation of an unusual lithium acylBpinOBpin compound as a key intermediate. KW - boronate KW - catalysis KW - borylation KW - carbonyl KW - copper Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318318 VL - 28 IS - 42 ER - TY - JOUR A1 - Zhang, Fangyuan A1 - Radacki, Krzysztof A1 - Braunschweig, Holger A1 - Lambert, Christoph A1 - Ravat, Prince T1 - Zinc-[7]helicenocyanine and its discrete π-stacked homochiral Dimer JF - Angewandte Chemie International Edition N2 - In this communication, we demonstrate a novel approach to prepare a discrete dimer of chiral phthalocyanine (Pc) by exploiting the flexible molecular geometry of helicenes, which enables structural interlocking and strong aggregation tendency of Pcs. Synthesized [7]helicene-Pc hybrid molecular structure, zinc-[7]helicenocyanine (Zn-7HPc), exclusively forms a stable dimeric pair consisting of two homochiral molecules. The dimerization constants were estimated to be as high as 8.96×10\(^6\) M\(^{−1}\) and 3.42×107 M\(^{−1}\) in THF and DMSO, respectively, indicating remarkable stability of dimer. In addition, Zn\(^{-7}\)HPc exhibited chiral self-sorting behavior, which resulted in preferential formation of a homochiral dimer also in the racemic sample. Two phthalocyanine subunits in the dimeric form strongly communicate with each other as revealed by a large comproportionation constant and observation of an IV-CT band for the thermodynamically stable mixed-valence state. KW - organic chemistry KW - supramolecular assembly KW - chirality KW - helicenes KW - homochiral dimer KW - phthalocyanines Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256534 VL - 60 ER - TY - JOUR A1 - Zhang, Chonghe A1 - Liu, Xiaocui A1 - Wang, Junyi A1 - Ye, Qing T1 - A Three-Dimensional Inorganic Analogue of 9,10-Diazido-9,10-Diboraanthracene: A Lewis Superacidic Azido Borane with Reactivity and Stability JF - Angewandte Chemie N2 - Herein, we report the facile synthesis of a three-dimensional (3D) inorganic analogue of 9,10-diazido-9,10-dihydrodiboraantracene, which turned out to be a monomer in both the solid and solution state, and thermally stable up to 230 °C, representing a rare example of azido borane with boosted Lewis acidity and stability in one. Apart from the classical acid-base and Staudinger reactions, E−H bond activation (E=B, Si, Ge) was investigated. While the reaction with B−H (9-borabicyclo[3.3.1]nonane) led directly to the 1,1-addition on N\(_{α}\) upon N\(_{2}\) elimination, the Si−H (Et\(_{3}\)SiH, PhMe\(_{2}\)SiH) activation proceeded stepwise via 1,2-addition, with the key intermediates 5\(_{int}\) and 6\(_{int}\) being isolated and characterized. In contrast, the cooperative Ge−H was reversible and stayed at the 1,2-addition step. KW - E-H bond activation KW - boracycle KW - azido borane KW - lewis superacid KW - structure elucidation Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318322 VL - 61 IS - 36 ER - TY - JOUR A1 - Zapf, Ludwig A1 - Radius, Udo A1 - Finze, Maik T1 - 1,3-bis(tricyanoborane)imidazoline-2-ylidenate anion - a ditopic dianionic N-heterocyclic carbene ligand JF - Angewandte Chemie International Edition N2 - The 1,3-bis(tricyanoborane)imidazolate anion 1 was obtained in high yield from lithium imidazolate and B(CN)\(_3\)−pyridine adduct. Anion 1 is chemically very robust and thus allowed the isolation of the corresponding H\(_5\)O\(_2\)\(^+\) salt. Furthermore, monoanion 1 served as starting species for the novel dianionic N-heterocyclic carbene (NHC), 1,3-bis(tricyanoborane)imidazoline-2-ylidenate anion 3 that acts as ditopic ligand via the carbene center and the cyano groups at boron. First reactions of this new NHC 3 with methyl iodide, elemental selenium, and [Ni(CO)\(_4\)] led to the methylated imidazolate ion 4, the dianionic selenium adduct 5, and the dianionic nickel tricarbonyl complex 6. These NHC derivatives provide a first insight into the electronic and steric properties of the dianionic NHC 3. Especially the combination of properties, such as double negative charge, different coordination sites, large buried volume and good σ-donor and π-acceptor ability, make NHC 3 a unique and promising ligand and building block. KW - inorganic chemistry KW - N-heterocyclic carbene KW - anioniccarbene KW - boron KW - cyanoborate KW - imidazolate Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256498 VL - 60 IS - 33 ER - TY - JOUR A1 - Zapf, Ludwig A1 - Peters, Sven A1 - Bertermann, Rüdiger A1 - Radius, Udo A1 - Finze, Maik T1 - Tricyanoborane‐Functionalized Anionic N‐Heterocyclic Carbenes: Adjustment of Charge and Stereo‐Electronic Properties JF - Chemistry – A European Journal N2 - The 1‐methyl‐3‐(tricyanoborane)imidazolin‐2‐ylidenate anion (2) was obtained in high yield by deprotonation of the B(CN)3‐methylimidazole adduct 1. Regarding charge and stereo‐electronic properties, anion 2 closes the gap between well‐known neutral NHCs and the ditopic dianionic NHC, the 1,3‐bis(tricyanoborane)imidazolin‐2‐ylidenate dianion (IIb). The influence of the number of N‐bonded tricyanoborane moieties on the σ‐donating and π‐accepting properties of NHCs was assessed by quantum chemical calculations and verified by experimental data on 2, IIb, and 1,3‐dimethylimidazolin‐2‐ylidene (IMe, IIa). Therefore NHC 2, which acts as a ditopic ligand via the carbene center and the cyano groups, was reacted with alkyl iodides, selenium, and [Ni(CO)\(_{4}\)] yielding alkylated imidazoles 3 and 4, the anionic selenium adduct 5, and the anionic nickel tricarbonyl complex 8, respectively. The results of this study prove that charge, number of coordination sites, buried volume (%V\(_{bur}\)) and σ‐donor and π‐acceptor abilities of NHCs can be effectively fine‐tuned via the number of tricyanoborane substituents. KW - N-heterocyclic carbene KW - anionic carbene KW - boron KW - cyanoborate KW - imidazolate Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-287200 VL - 28 IS - 39 ER - TY - JOUR A1 - Zapf, Ludwig A1 - Finze, Maik T1 - The crystal structure of poly[(μ \(_3\)-imidazolato-κ \(^3\) N:N:N′)(tetrahydrofuran- κ \(^1\) O)lithium(I)], C\(_7\)H\(_{11}\)LiN\(_2\)O JF - Zeitschrift für Kristallographie - New Crystal Structures N2 - C\(_7\)H\(_{11}\)LiN\(_2\)O, monoclinic, P2\(_1\)/c (no. 14), a = 8.9067(1) angstrom, b = 8.6975(1) angstrom, c = 10.2398(1) angstrom, beta = 101.900(3)degrees, V = 770.491(15) angstrom(3), Z = 4, R-gt (F) = 0.0338, wR(ref) (F\(^2\)) = 0.0925, T = 100 K. KW - acid sphingomyelinase KW - antidepressants KW - major depression KW - regulatory T cells KW - sphingolipids Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-260745 VL - 236 IS - 5 ER - TY - THES A1 - Zapf, Ludwig T1 - Novel Borane- and Phosphorane- Functionalized Anionic Carbene Ligands T1 - Neuartige Boran- und Phosphoran-funktionalisierte anionische Carbenliganden N2 - N-heterocyclic carbenes (NHC) are utilized for the stabilization of reactive compounds, for the activation of strong bonds, and as ligands in transition metal chemistry. In contrast to neutral NHCs, few examples of anionic or even dianionic NHCs are known. One approach for the synthesis of anionic carbenes is the deprotonation of neutral or anionic precursors, bearing Lewis acids instead of alkyl or aryl substituents. Following this strategy, novel anionic and dianionic NHCs, featuring weakly coordinating fluorinated borane and phosphorane substituents or coordinating tricyanoborane substituents were synthesized within the scope of this thesis. These carbenes possess unprecedented stabilities compared to related species. Furthermore, their electronic and steric properties can be directly adjusted by the type of Lewis acid attached. Their potential as ligands with highly shielding weakly coordinating substituents next to the carbene coordination center was demonstrated by the syntheses of the respective NHC selenium adducts and NHC gold(I) complexes. In contrast anionic NHCs with coordinating tricyanoborane moieties have an outstanding potential as ditopic ligands with coordination being possible at the carbene center and via the cyano groups. Their beneficial ligand properties were demonstrated by the syntheses of the respective NHC selenium adducts and NHC nickeltricarbonyl complexes. The combination of electronic properties, the large buried volume, the negative charge, the possibility to act as ditopic or ligands with weakly coordinating groups, and the ease of accessibility render borane- and phosphorane functionalized NHCs unique novel ligands. A further project of this PhD thesis deals with the steric properties of Lewis acids. Therefore, an easy-to-apply model was designed to quantify the steric demand of Lewis acids. Using the results of this evaluation, a second model was developed which judges the steric repulsion in Lewis acid/base adduct formation for arbitrary sets of acids and bases. N2 - N-heterozyklische Carbene (NHC) werden für die Stabilisierung reaktiver Verbindungen, für die Aktivierung starker Bindungen sowie als Liganden in der Übergangsmetallchemie eingesetzt. Im Gegensatz zu neutralen NHCs sind nur sehr wenige Vertreter anionischer oder gar dianionischer NHCs bekannt. Eine gute Strategie für deren Synthese stellt die Deprotonierung neutraler oder anionischer Vorstufen dar, welche Lewis-Säuren an Stelle von Alkyl- oder Arylsubstituenten tragen. Dieser Route folgend, wurden im Rahmen dieser Arbeit neue anionische und dianionische NHCs dargestellt, welche mit schwach koordinierenden, fluorierten Boran- und Phosphoransubstituenten oder mit koordinierenden Tricyanoboraneinheiten funktionalisiert sind. Diese Carbene besitzen beispiellose Stabilitäten, verglichen mit verwandten Verbindungen. Darüber hinaus können deren elektronischen und sterischen Eigenschaften direkt über die Wahl der Lewis-Säure gesteuert werden. Das Potential der Liganden mit stark abschirmenden schwach koordinierenden Substituenten in Nachbarschaft zum Carbenzentrum wurde durch die Synthese von NHC-Selen-Verbindungen sowie NHC-Gold(I)komplexen gezeigt. Im Gegensatz hierzu besitzen anionische NHCs mit koordinierenden Tricyanoboraneinheiten ein herausragendes Potential als ditope Liganden, da eine Koordination sowohl über das Carbenzentrum als auch über die Cyanogruppen möglich ist. Diese Vorteilhaften Ligandeneigenschaften wurden durch die Synthese entsprechender NHC-Selen-Addukte und NHC-Nickeltricarbonylkomplexe gezeigt. Somit macht die Kombination der elektronischen Eigenschaften, des großen verdeckten Volumens, der negativen Ladung, der Möglichkeit als ditoper Ligand oder als Ligand mit schwach koordinierenden Gruppen zu fungieren sowie die einfache Zugänglichkeit Boran- und Phosphoran-funktionalisierte NHCs zu einzigartigen neuartigen Liganden. Ein weiterer Teil dieser Arbeit setzt sich mit dem sterischen Anspruch von Lewis-Säuren auseinander. Hierfür wurde ein einfach anwendbares Modell entworfen, welches diesen quantifiziert. Ausgehend von diesen Ergebnissen wurde ein zweites Modell entwickelt, welches die sterische Abstoßung zwischen Lewis-Säure/Base-Addukten für beliebige Säure/Base-Kombinationen beurteilt. KW - Komplexe KW - Borane KW - Carbene KW - Phosphorane KW - Koordinationsverbindungen KW - Liganden Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-320781 ER - TY - THES A1 - Ye, Qing T1 - Synthesis and Investigation of Borylene Complexes: from Borylene Transfer to Borylene Catenation T1 - Synthese und Untersuchung von Borylenkomplexen: von Borylentransfer zu Borylen-Verkettung N2 - Im Rahmen dieser Arbeit wurde das Spektrum des Borylentransfers ausgeweitet, indem Übergangsmetall Alkinylkomplexe und Metall-Kohlenstoff-Doppelbindungen als Borylen-Akzeptoren eingeschlossen wurden. Neben der Salzeliminierung, Halogenidabstraktion und Dehydrierung, wurde eine neuartige Syntheseroute zu terminalen Borylenkomplexen durch Salz- und Silylhalogenideliminierung etabliert. Mithilfe dieser Strategie gelang die Darstellung von [(OC)3(Me3P)Fe=BDur], ein seltenes Beispiel für einen neutralen Arylborylenkomplex. Im Speziellen hat diese Verbindung ein großes Anwendungspotenzial für Metathesereaktionen und die Funktionalisierung von polycyclischen aromatischen Kohlenwasserstoffen, wie z. B. Naphthalin, gezeigt. Außerdem konnte ein Eisen-Bis(borylen)-Komplex [(OC)3Fe(BDur){BN(SiMe3)2}] durch einen Phosphan-Borylen-Austausch dargestellt werden. Ausgehend von diesem Komplex gelang die Darstellung von 1,4-Diboracyclohexadien bzw. des ersten 1,4-Dibora-1,3-Butadien-Komplexes, wodurch eine neue Art von Borylentransfer etabliert werden konnte. Höchst interessant ist es, dass der Transfer von weiteren Borylen-Einheiten in die Koordinationssphäre des Eisenatoms zu einer kontrollierten Borylen-Verkettung geführt hat. N2 - Within the scope of this thesis, the area of borylene transfer has been broadened by including transition-metal alkynyl complexes and metal-carbon double bonds as borylene acceptors. In addition to double salt elimination, halide abstraction and dehydrogenation processes, a novel high-yield synthetic procedure for terminal borylene complexes was established, i.e. salt elimination and subsequent silylhalogenide liberation. Accordingly, it was possible to prepare [(OC)3(Me3P)Fe=BDur] as a rare example of a neutral arylborylene species. Moreover, this compound has been demonstrated to possess great potential for metathesis reactions and the functionalization of polycyclic aromatic hydrocarbons such as naphthalene. Moreover, it could undergo a phosphine-borylene exchange reaction, yielding the iron bis(borylene) complex [(OC)3Fe(BDur){BN(SiMe3)2}], which has turned out to be applicable for preparation of 1,4-diboracyclohexadiene and unprecedented 1,4-dibora-1,3-butadiene complexes, thus establishing a new type of borylene transfer. Most interestingly, upon transfer of further borylene moieties into the coordination sphere of iron, borylene-catenation was accomplished in a highly controlled manner. KW - Borylene KW - Übergangsmetallkomplexe KW - Borylenkomplexe KW - Bor KW - Photochemie KW - Borheterocyclen KW - Boracumulen KW - Borylene complexes KW - Boron KW - Photochemistry KW - Boraheterocycles KW - Boracumulene Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-71443 ER - TY - THES A1 - Würtemberger-Pietsch, Sabrina T1 - Anionic and Neutral Lewis-Base Adducts of Diboron(4) Compounds T1 - Anionische und Neutrale Lewis-Basen Addukte von Diboran(4)-Verbindungen N2 - Anionic Adducts Sp2-sp3 tetraalkoxy diboron compounds have gained attention due to the development of new, synthetically useful catalytic reactions either with or without transition-metals. Lewis-base adducts of the diboron(4) compounds were suggested as possible intermediates in Cu catalyzed borylation reactions some time ago. However, intermolecular adducts of tetraalkoxy diboron compounds have not been studied yet in great detail. In preliminary studies, we have synthesized a series of anionic sp2-sp3 adducts of B2pin2 with alkoxy-groups (L = [OMe]–, [OtBu]–), a phenoxy-group (L = [4-tBuC6H4O]–) and fluoride (L = [F]–, with [nBu4N]+ as the counter ion) as Lewis-bases. Neutral Adducts Since their isolation and characterization, applications of N-heterocyclic carbenes (NHCs) and related molecules, e.g., cyclic alkylaminocarbenes (CAACs) and acyclic diaminocarbenes (aDCs), have grown rapidly. Their use as ligands in homogeneous catalysis and directly in organocatalysis, including recently developed borylation reactions, is now well established. Recently, several examples of ring expansion reactions (RER) involving NHCs were reported to take place at elevated temperatures, involving Be, B, and Si. Furthermore, preliminary studies in the group of Marder et al. showed the presence of neutral sp2-sp3 diboron compounds with B2pin2 and the NHC Cy2Im. In this work, we focused on the synthesis and characterization of further neutral sp2-sp3 as well as sp3-sp3 diboron adducts with B2cat2 and B2neop2 and different NHCs. Whereas the mono-NHC adduct is stable for several hours at temperatures up to 60 °C, the bis-NHC adducts undergo thermally induced rearrangement to form the ring expanded products compound 26 and 27. B2neop2 is much more reactive than B2cat2 giving ring expanded product 29 at room temperature in quantitative yields, demonstrating that NHC ring expansion and B–B bond cleavage can be very facile processes. Whereas the mono-NHC adduct is stable for several hours at temperatures up to 60 °C, the bis-NHC adducts undergo thermally induced rearrangement to form the ring expanded products compound 26 and 27. B2neop2 is much more reactive than B2cat2 giving ring expanded product 29 at room temperature in quantitative yields, demonstrating that NHC ring expansion and B–B bond cleavage can be very facile processes. N2 - Im Rahmen der vorliegenden Arbeit wurde die Synthese und das Reaktionsverhalten Lewis-Säuren/Lewis-Basen-Addukte von Diboran(4)-Verbindungen als Lewis-Säuren untersucht. Als Lewis-Basen dienten zum einem das Fluorid-Ion, zum anderen N-Heterozyklische Carbene. Ein Ziel der vorliegenden Arbeit war somit die Synthese und Charakterisierung anionischer sp2-sp3-Diboran-Verbindungen des Typs [B2(OR)4F][NMe4] (OR2 = Pinakol, Catechol und Neopentyl), die auf ihre Eigenschaft als „Boryl-Übertragungsreagenz“ gegenüber Diazoniumsalzen überprüft wurden. Der zweite Teil der Arbeit untersucht die Reaktion von Diboranen (B2cat2 und B2neop2) mit gesättigten und ungesättigten N-Heterozyklischen Carbenen (NHCs). Die neutralen, einfach- und zweifach-substituierten NHC-Addukte des Typs B2(OR)4•NHC und B2(OR)4•(NHC)2 wurden anschließend auf ihre thermische Stabilität untersucht. Die Ergebnisse dieser Arbeit zeigen zum einem, dass anionische Addukte des Typs [B2(OR)4F][NMe4] 4, 7 und 9 als „Boryl-Übertragungsreagenzien“ eingesetzt werden können. Ferner lassen sich ausgehend von Diboran(4)-Verbindungen durch die Umsetzung mit N Heterozyklischen Carbenen die einfach- und zweifach-substituierten NHC-Addukte B2(OR)4•NHC und B2(OR)4•(NHC)2 synthetisieren. Diese sind zum Teil instabil gegenüber einer Ringerweiterungsreaktion unter Insertion einer Boryleinheit in die C–N-Bindung des Carbens. Untersuchungen an NHC-Addukten von Boranen BR3 und HB(OR)2 zeigen weiterhin, dass die Addukte Ph3B•NHC gegenüber solchen Ringerweiterungen stabil sind. Die Addukte HB(OR)2•NHC sind je nach eingesetztem Carben und Boran entweder stabil oder reagieren unter B–H-Bindungsaktivierung zur Ringerweiterung des Carbens. KW - Addukt KW - Diborane KW - carben KW - Lewis-Base Adducts KW - Diboron(4) Compounds KW - Ring Expansion Reaction Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136321 ER - TY - JOUR A1 - Wu, Zhu A1 - Roldao, Juan Carlos A1 - Rauch, Florian A1 - Friedrich, Alexandra A1 - Ferger, Matthias A1 - Würthner, Frank A1 - Gierschner, Johannes A1 - Marder, Todd B. T1 - Pure Boric Acid Does Not Show Room-Temperature Phosphorescence (RTP) JF - Angewandte Chemie N2 - Boric acid (BA) has been used as a transparent glass matrix for optical materials for over 100 years. However, recently, apparent room-temperature phosphorescence (RTP) from BA (crystalline and powder states) was reported (Zheng et al., Angew. Chem. Int. Ed. 2021, 60, 9500) when irradiated at 280 nm under ambient conditions. We suspected that RTP from their BA sample was induced by an unidentified impurity. Our experimental results show that pure BA synthesized from B(OMe)\(_{3}\) does not luminesce in the solid state when irradiated at 250–400 nm, while commercial BA indeed (faintly) luminesces. Our theoretical calculations show that neither individual BA molecules nor aggregates would absorb light at >175 nm, and we observe no absorption of solid pure BA experimentally at >200 nm. Therefore, it is not possible for pure BA to be excited at >250 nm even in the solid state. Thus, pure BA does not display RTP, whereas trace impurities can induce RTP. KW - boric acid KW - room-temperature phosphorescence (RTP) KW - optical materials Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318308 VL - 61 IS - 15 ER - TY - JOUR A1 - Wu, Zhu A1 - Nitsch, Jörn A1 - Marder, Todd B. T1 - Persistent room-temperature phosphorence from purely organic molecules and multi-component systems JF - Advanced Optical Materials N2 - Recently, luminophores showing efficient room-temperature phosphorescence (RTP) have gained tremendous interest due to their numerous applications. However, most phosphors are derived from transition metal complexes because of their intrinsic fast intersystem crossing (ISC) induced by strong spin–orbit coupling (SOC) constants of the heavy metal. Metal-free RTP materials are rare and have become a promising field because they are inexpensive and environmentally friendly. This review summarizes organic molecular materials with long triplet lifetimes at room temperature from the perspective of whether they stem from a molecular or multi-component system. Among purely organic phosphors, heteroatoms are usually introduced into the backbone in order to boost the singlet–triplet ISC rate constant. In multi-component systems, useful strategies such as host–guest, polymer matrix, copolymerization, and supramolecular assembly provide a rigid matrix to restrict nonradiative pathways thus realizing ultralong RTP. KW - inorganic chemistry KW - non-radiative decay KW - polymer matrix KW - intersystem crossing KW - luminescence KW - photophysics Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256415 VL - 9 IS - 20 ER - TY - JOUR A1 - Wu, Zhu A1 - Dinkelbach, Fabian A1 - Kerner, Florian A1 - Friedrich, Alexandra A1 - Ji, Lei A1 - Stepanenko, Vladimir A1 - Würthner, Frank A1 - Marian, Christel M. A1 - Marder, Todd B. T1 - Aggregation-Induced Dual Phosphorescence from (o-Bromophenyl)-Bis(2,6-Dimethylphenyl)Borane at Room Temperature JF - Chemistry—A European Journal N2 - Designing highly efficient purely organic phosphors at room temperature remains a challenge because of fast non-radiative processes and slow intersystem crossing (ISC) rates. The majority of them emit only single component phosphorescence. Herein, we have prepared 3 isomers (o, m, p-bromophenyl)-bis(2,6-dimethylphenyl)boranes. Among the 3 isomers (o-, m- and p-BrTAB) synthesized, the ortho-one is the only one which shows dual phosphorescence, with a short lifetime of 0.8 ms and a long lifetime of 234 ms in the crystalline state at room temperature. Based on theoretical calculations and crystal structure analysis of o-BrTAB, the short lifetime component is ascribed to the T\(^M_1\) state of the monomer which emits the higher energy phosphorescence. The long-lived, lower energy phosphorescence emission is attributed to the T\(^A_1\) state of an aggregate, with multiple intermolecular interactions existing in crystalline o-BrTAB inhibiting nonradiative decay and stabilizing the triplet states efficiently. KW - AIE KW - luminescence KW - phosphorescence KW - triarylborane KW - triplet Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318297 VL - 28 IS - 30 ER - TY - THES A1 - Wu, Zhu T1 - Room Temperature Phosphorescence (RTP): Experimental And Theoretical Studies on Boron-Containing Materials T1 - Raumtemperaturphosphoreszenz (RTP): Experimentelle und theoretische Studien zu borhaltigen Materialien N2 - Persistent room temperature phosphorescent (RTP) luminophores have gained remarkable interest recently for a number of applications in security printing, OLEDs, optical storage, time-gated biological imaging and oxygen sensors. We report the first persistent RTP with lifetimes up to 0.5 s from simple triarylboranes which have no lone pairs. We also have prepared 3 isomeric (o, m, p-bromophenyl)-bis(2,6-dimethylphenyl)boranes. Among the 3 isomers (o-, m- and p-BrTAB) synthesized, the ortho-one is the only one which shows dual phosphorescence, with a short lifetime of 0.8 ms and a long lifetime of 234 ms in the crystalline state at room temperature. At last, we checked the RTP properties from the boric acid. We found that the pure boric acid does not show RTP in the solid state. N2 - In letzter Zeit haben Luminophore, die eine effiziente Raumtemperatur-Phosphoreszenz (RTP) zeigen, aufgrund ihrer zahlreichen Anwendungen enormes Interesse gefunden. Die meisten phosphoreszierenden Materialien leiten sich jedoch von Übergangsmetallkomplexen ab, da ihr intrinsisches schnelles Intersystem Crossing (ISC) durch die starke Spin Bahn Kopplung (SOC) des Schwermetalls induziert wird. Metallfreie RTP Materialien sind selten und haben sich zu einem vielversprechenden Gebiet entwickelt, da sie kostengünstig und umweltfreundlich sind. Dieses Kapitel fasst organische molekulare Materialien mit langen Triplett Lebensdauern bei Raumtemperatur aus der Perspektive zusammen, ob sie aus einem molekularen oder Mehrkomponentensystem stammen. Bei rein organischen phosphoreszierenden Materialien werden üblicherweise Heteroatome in das Rückgrat eingeführt, um die Singulett Triplett ISC Geschwindigkeitskonstante zu erhöhen. In Mehrkomponentensystemen wird durch nützliche Strategien wie Wirt-Gast, Polymermatrix, Copolymerisation und supramolekulare Anordnung eine starre Matrixanordnung erreicht, durch die nichtstrahlende Pfade eingeschränkt und so ultralange RTP realisiert wird. ... KW - room temperature phosphorescence Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-260844 ER - TY - JOUR A1 - Witte, Robert A1 - Arrowsmith, Merle A1 - Lamprecht, Anna A1 - Schorr, Fabian A1 - Krummenacher, Ivo A1 - Braunschweig, Holger T1 - C−C and C−N Bond Activation, Lewis‐Base Coordination and One‐ and Two‐Electron Oxidation at a Linear Aminoborylene JF - Chemistry – A European Journal N2 - A cyclic alkyl(amino)carbene (CAAC)‐stabilized dicoordinate aminoborylene is synthesized by the twofold reduction of a [(CAAC)BCl\(_{2}\)(TMP)] (TMP=2,6‐tetramethylpiperidyl) precursor. NMR‐spectroscopic, X‐ray crystallographic and computational analyses confirm the cumulenic nature of the central C=B=N moiety. Irradiation of [(CAAC)B(TMP)] (2) resulted in an intramolecular C−C bond activation, leading to a doubly‐fused C\(_{10}\)BN heterocycle, while the reaction with acetonitrile resulted in an aryl migration from the CAAC to the acetonitrile nitrogen atom, concomitant with tautomerization of the latter to a boron‐bound allylamino ligand. One‐electron oxidation of 2 with CuX (X=Cl, Br) afforded the corresponding amino(halo)boryl radicals, which were characterized by EPR spectroscopy and DFT calculations. Placing 2 under an atmosphere of CO afforded the tricoordinate (CAAC,CO)‐stabilized aminoborylene. Finally, the twofold oxidation of 2 with chalcogens led, in the case of N\(_{2}\)O and sulfur, to the splitting of the B−C\(_{CAAC}\) bond and formation of the 2,4‐diamino‐1,3,2,4‐dichalcogenadiboretanes and CAAC‐chalcogen adducts, whereas with selenium a monomeric boraselenone was isolated, which showed some degree of B−Se multiple bonding. KW - bond activation KW - boraselenone KW - dicoordinate borylene KW - one-electron oxidation KW - push-pull stabilization Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312491 VL - 29 IS - 16 ER - TY - JOUR A1 - Wirthensohn, Raphael A1 - Finze, Maik T1 - The crystal structure of trimethylsulfonium tris(trifluoromethylsulfonyl)methanide, C\(_7\)H\(_9\)F\(_9\)O\(_6\)S\(_4\) JF - Zeitschrift für Kristallographie - New Crystal Structures N2 - C\(_7\)H\(_9\)F\(_9\)O\(_6\)S\(_4\), orthorhombic, P2\(_1\)2\(_1\)2\(_1\) (no. 19), a = 8.80180(10) Å, b= 10.96580(10) Å, c = 16.91360(10) Å,V= 1632.48(3) Å\(^3\), Z= 4, R\(_{gt}\)(F) = 0.0222, wR\(_{ref}\)(F\(^2\)) = 0.0604, T = 100 K. KW - chemistry Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-231358 VL - 236 IS - 2 ER - TY - JOUR A1 - Wildervanck, Martijn J. A1 - Hecht, Reinhard A1 - Nowak-Król, Agnieszka T1 - Synthesis and strong solvatochromism of push-pull thienylthiazole boron complexes JF - Molecules N2 - The solvatochromic behavior of two donor-π bridge-acceptor (D-π-A) compounds based on the 2-(3-boryl-2-thienyl)thiazole π-linker and indandione acceptor moiety are investigated. DFT/TD-DFT calculations were performed in combination with steady-state absorption and emission measurements, along with electrochemical studies, to elucidate the effect of two different strongly electron-donating hydrazonyl units on the solvatochromic and fluorescence behavior of these compounds. The Lippert–Mataga equation was used to estimate the change in dipole moments (Δµ) between ground and excited states based on the measured spectroscopic properties in solvents of varying polarity with the data being supported by theoretical studies. The two asymmetrical D-π-A molecules feature strong solvatochromic shifts in fluorescence of up to ~4300 cm\(^{−1}\) and a concomitant change of the emission color from yellow to red. These changes were accompanied by an increase in Stokes shift to reach values as large as ~5700–5800 cm\(^{−1}\). Quantum yields of ca. 0.75 could be observed for the N,N-dimethylhydrazonyl derivative in nonpolar solvents, which gradually decreased along with increasing solvent polarity, as opposed to the consistently reduced values obtained for the N,N-diphenylhydrazonyl derivative of up to ca. 0.20 in nonpolar solvents. These two push–pull molecules are contrasted with a structurally similar acceptor-π bridge-acceptor (A-π-A) compound. KW - solvatochromism KW - donor–acceptor KW - fluorescence KW - hydrazone KW - Lippert–Mataga plot KW - push–pull thienylthiazole KW - tetracoordinated boron Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286186 SN - 1420-3049 VL - 27 IS - 17 ER - TY - JOUR A1 - Weiser, Jonas A1 - Cui, Jingjing A1 - Dewhurst, Rian D. A1 - Braunschweig, Holger A1 - Engels, Bernd A1 - Fantuzzi, Felipe T1 - Structure and bonding of proximity‐enforced main‐group dimers stabilized by a rigid naphthyridine diimine ligand JF - Journal of Computational Chemistry N2 - The development of ligands capable of effectively stabilizing highly reactive main‐group species has led to the experimental realization of a variety of systems with fascinating properties. In this work, we computationally investigate the electronic, structural, energetic, and bonding features of proximity‐enforced group 13–15 homodimers stabilized by a rigid expanded pincer ligand based on the 1,8‐naphthyridine (napy) core. We show that the redox‐active naphthyridine diimine (NDI) ligand enables a wide variety of structural motifs and element‐element interaction modes, the latter ranging from isolated, element‐centered lone pairs (e.g., E = Si, Ge) to cases where through‐space π bonds (E = Pb), element‐element multiple bonds (E = P, As) and biradical ground states (E = N) are observed. Our results hint at the feasibility of NDI‐E2 species as viable synthetic targets, highlighting the versatility and potential applications of napy‐based ligands in main‐group chemistry. KW - bond theory KW - computational chemistry KW - density functional calculations KW - main group elements KW - N ligands Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312586 VL - 44 IS - 3 SP - 456 EP - 467 ER - TY - JOUR A1 - Wei, Yuxiang A1 - Wang, Junyi A1 - Yang, Weiguang A1 - Lin, Zhenyang A1 - Ye, Qing T1 - Boosting Ring Strain and Lewis Acidity of Borirane: Synthesis, Reactivity and Density Functional Theory Studies of an Uncoordinated Arylborirane Fused to o‐Carborane JF - Chemistry – A European Journal N2 - Among the parent borirane, benzoborirene and ortho‐dicarbadodecaborane‐fused borirane, the latter possesses the highest ring strain and the highest Lewis acidity according to our density functional theory (DFT) studies. The synthesis of this class of compounds is thus considerably challenging. The existing examples require either a strong π‐donating group or an extra ligand for B‐coordination, which nevertheless suppresses or completely turns off the Lewis acidity. The title compound, which possesses both features, not only allows the 1,2‐insertion of P=O, C=O or C≡N to proceed under milder conditions, but also enables the heretofore unknown dearomative 1,4‐insertion of Ar−(C=O)− into a B−C bond. The fusion of strained molecular systems to an o‐carborane cage shows great promise for boosting both the ring strain and acidity. KW - borirane KW - carborane KW - fused boracycles KW - Lewis acidity KW - ring strain Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312089 VL - 29 IS - 5 ER - TY - INPR A1 - Wang, Sunewang Rixin A1 - Arrowsmith, Merle A1 - Braunschweig, Holger A1 - Dewhurst, Rian A1 - Paprocki, Valerie A1 - Winner, Lena T1 - CuOTf-mediated intramolecular diborene hydroarylation T2 - Chemical Communications N2 - Upon complexation to CuOTf, a PMe\(_3\)-stabilized bis(9-anthryl) diborene slowly undergoes an intramolecular hydroarylation reaction at room temperature. Subsequent triflation of the B–H bond with CuOTf, followed by a PMe\(_3\) transfer, finally yields a cyclic sp\(^2\)-sp\(^3\) boryl-substituted boronium triflate salt. KW - boron KW - C-H activation KW - transition metals Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-154055 N1 - This is the pre-peer reviewed version of the following article: Chemical Communications, 2017, 11945-11947 which has been published at DOI: 10.1039/C7CC07371B. ER - TY - INPR A1 - Wang, Sunewang Rixin A1 - Arrowsmith, Merle A1 - Braunschweig, Holger A1 - Dewhurst, Rian A1 - Dömling, Michael A1 - Mattock, James A1 - Pranckevicius, Conor A1 - Vargas, Alfredo T1 - Monomeric 16-Electron π-Diborene Complexes of Zn(II) and Cd(II) T2 - Journal of the American Chemical Society N2 - Despite the prevalence of stable π-complexes of most d\(^{10}\) metals, such as Cu(I) and Ni(0), with ethylene and other olefins, complexation of d\(^{10}\) Zn(II) to simple olefins is too weak to form isolable complexes due to the metal ion's limited capacity for π-backdonation. By employing more strongly donating π- ligands, namely neutral diborenes with a high-lying π(B=B) or- bital, monomeric 16-electron M(II)-diborene (M = Zn, Cd) π- complexes were synthesized in good yields. Metal–B2 π- interactions in both the solid and solution state were confirmed by single-crystal X-ray analyses and their solution NMR and UV-vis absorption spectroscopy, respectively. The M(II) centers adopt a trigonal planar geometry and interact almost symmetrically with both boron atoms. The MB2 planes significantly twist out of the MX\(_2\) planes about the M-centroid(B–B) vector, with angles rang- ing from 47.0° to 85.5°, depending on the steric interactions be- tween the diborene ligand and the MX\(_2\) fragment. KW - boron KW - transition metal complex KW - diborene Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-153058 N1 - This is the pre-peer reviewed version of the following article: Journal of the American Chemical Society, 2017, 139 (31), pp 10661–10664, which has been published in final form at doi:10.1021/jacs.7b06644. ER - TY - INPR A1 - Wang, Sunewang R. A1 - Arrowsmith, Merle A1 - Böhnke, Julian A1 - Braunschweig, Holger A1 - Dellermann, Theresa A1 - Dewhurst, Rian D. A1 - Kelch, Hauke A1 - Krummenacher, Ivo A1 - Mattock, James D. A1 - Müssig, Jonas H. A1 - Thiess, Torsten A1 - Vargas, Alfredo A1 - Zhang, Jiji T1 - Engineering a Small HOMO-LUMO Gap and Intramolecular B–B Hydroarylation by Diborene/Anthracene Orbital Intercalation T2 - Angewandte Chemie, International Edition N2 - The diborene 1 was synthesized by reduction of a mixture of 1,2-di-9-anthryl-1,2-dibromodiborane(4) (6) and trimethylphosphine with potassium graphite. The X-ray structure of 1 shows the two anthryl rings to be parallel and their π(C\(_{14}\)) systems perpendicular to the diborene π(B=B) system. This twisted conformation allows for intercalation of the relatively high-lying π(B=B) orbital and the low-lying π* orbital of the anthryl moiety with no significant conjugation, resulting in a small HOMO-LUMO gap (HLG) and ultimately an unprecedented anthryl B–B bond hydroarylation. The HLG of 1 was estimated to be 1.57 eV from the onset of the long wavelength band in its UV–vis absorption spectrum (THF, λ\(_{onset}\) = 788 nm). The oxidation of 1 with elemental selenium afforded diboraselenirane 8 in quantitative yield. By oxidative abstraction of one phosphine ligand by another equivalent of elemental selenium, the B–B and C\(^1\)–H bonds of 8 were cleaved to give the cyclic 1,9-diboraanthracene 9. KW - boron KW - small HOMO-LUMO gap KW - diborenes KW - borylation KW - hydroarylation Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148126 N1 - This is the pre-peer reviewed version of the following article: S. R. Wang, M. Arrowsmith, J. Böhnke, H. Braunschweig, T. Dellermann, R. D. Dewhurst, H. Kelch, I. Krummenacher, J. D. Mattock, J. H. Müssig, T. Thiess, A. Vargas, J. Zhang, Angew. Chem. Int. Ed. 2017, 56, 8009., which has been published in final form at DOI: 10.1002/anie.201704063. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving. VL - 56 IS - 27 ER - TY - THES A1 - Walfort, Bernhard T1 - Novel dianionic sulfur ylides and related compounds T1 - Neuartige dianionische Schwefelylide und verwandte Verbindungen N2 - Priority task of the thesis was to replace oxygen atoms in sulfur oxoanions SOnm– or imido groups in sulfur polyimido anions S(NR)nm– isoelectronically by R2C-methylene groups. This would open a wide avenue to new target molecules containing a formally double bonded carbon next to formally double bonded nitrogen atoms in highly charged sulfur-centred anions like S(CR2)x(NR)ym–. They clearly are reminiscent to sulfur ylides. Both, alkylendiimidosulfites and alkylentriimidosulfates are accessible via deprotonaton of the corresponding alkyldiimidosulfinates and alkyltriimidosulfonates with methyllithium. The reactivity of the novel compounds is dominated by the carbanionic centre. Addition reactions to another SN formal doubble bond are feasible and are leading to the yet unknown imidoanalogues compounds alkyl-bis-(diimidosulfinates) and alkyl-bis-(triimidosulfonates). N2 - Der Schwerpunkt der Arbeit lag in dem isoelektronischen Ersatz der Sauerstoffatome in Schwefeloxoanionen SOnm- oder der Imidogruppen in Schwefelpolyimidoanionen durch eine R2C-methylen Gruppe. Diese Moleküle besitzen neben einer formalen SC-Doppelbindung eine SN-Doppelbindung mit einem stark positiv geladenem Schwefelatom als Zentrum S(CR2)x(NR)ym–. Diese Verbindungen enthalten analog der bekannten Sulfonium- und Sulfoxoniumylide einen positiv geladenen Schwefel nebst einem negativ geladenen Kohlenstoff. Sowohl die Alkylendiimidosulfite als auch die Alkylentriimidosulfate sind mittels Deprotonierung des alpha-Kohlenstoffatoms in Alkyldiimidosulfinaten und Alkyltriimidosulfonaten mit Methyllithium erhältlich. Die Reaktivität dieser neuartigen Verbindungen wird durch das carbanionische Kohlenstoffatom bestimmt. Additionsreaktionen dieser verbindungen an eine formale SN-Doppelbindung sind möglich und führen zu den bis dahin unbekannten Imidoanalogen Verbindungen, Alkyl-bis-(diimidosulfinat) und Alkyl-bis-(triimidosulfonat). KW - Schwefelylide KW - Übergangsmetallverbindungen KW - Schwefelylide KW - Polyimidoanionen KW - Sulfit KW - Sulfat KW - Sulfur Ylides KW - Polyimido Anions KW - Sulfite KW - Sulfate Y1 - 2001 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-1181274 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Tastenoy, M. A1 - Camus, J. A1 - Christophe, J. A1 - Strohmann, C. A1 - Linoh, H. A1 - Zilch, H. A1 - Tacke, Reinhold A1 - Mutschler, E. A1 - Lambrecht, G. T1 - Binding and functional properties of antimuscarinics of the hexocyclium/sila-hexocyclium and hexahydro-diphenidol/hexahydro-sila-diphenidol type to muscarinic receptor subtypes N2 - l In an attempt to assess the structural requirements for the musearlnie receptor selectivity of hexahydro-diphenidol (hexahydro-difenidol) and hexahydro-sila-diphenidol (hexahydro-sila-difenidol), a serles of structurally related C/Si pairs were investigated, along with atropine, pirenzepine and methoctramine, for their binding affinities in NB-OK 1 cells as well as in rat heart and pancreas. 2 The action of these antagonists at musearlnie receptors mediating negative inotropic responses in guinea-pig atrla and ileal contractions has also been assessed. 3 Antagonist binding data indicated that NB-OK 1 cells (M\(_1\) type) as weil as rat heart (cardiac type) and pancreas (glandularjsmooth muscle type) possess different muscarinic receptor subtypes. 4 A highly significant correlation was found between the binding affinities of the antagonists to muscarinic receptors in rat heart and pancreas, respectively, and the affinities to muscarinic receptors in guinea-pig atria and ileum. This implies that the musearlnie binding sites in rat heart and the receptors in guinea-pig atrla are essentially similar, but different from those in pancreas and ileum. 5 The antimuscarinic potency of hexahydro-diphenidol and hexahydro-sila-diphenidol at the three subtypes was inftuenced differently by structural modifications (e.g. quaternization). Different selectivity profiles for the antagonists were obtained, which makes these compounds useful tools to investigate further muscarinic receptor heterogeneity. lndeed, the tertiary analogues hexahydrodiphenidol (HHD) and hexahydro-sila-diphenidol (HHSiD) bad an M\(_1\) = glandularjsmooth muscle > cardiac selectivity profile, whereas the quaternary analogues HHD methiodide and HHSiD methiodide were M\(_1\) preferring (M\(_1\) > glandularjsmooth muscle, cardiac). KW - Anorganische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63944 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Camus, J. A1 - Tastenoy, M. A1 - Mutschler, E. A1 - Strohmann, C. A1 - Tacke, Reinhold A1 - Schjelderup, L. A1 - Aasen, A. A1 - Lambrecht, G. A1 - Christophe, J. T1 - Stereoselective interaction of procyclidine, hexahydro-difenidol, hexbutinol and oxyphencyclimine, and of related antagonists, with four muscarinic receptors N2 - Wc invcstigatcd thc binding properlies of thc (R)- and (Sl-cnantiomcrs of thc muscarinic antagonists trihcxyphcnidyl, procyclidinc, hcxahydro-difcnidol. p-fluoro-hcxahydro-difcnidol. hcxbutinol, p-fluoro-hcxbutinnl. and thcir corrcsponding methiodidcs at muscarinic M\(_1\), M\(_2\)• M\(_3\) and M\(_4\) receptor subtypes. In addition. binding properlies of thc (R)- and (S)-cnantiomcrs of oxyphcncycliminc wcrc studicd. The {R)- cnantiomcrs (cutomcrs} of all the compounds had a grcatcr affinity than the (S)-isomcrs for thc four muscarinic rcccptor subtypcs. Thc binding pattcrns of thc (R)- and (S)-enantiomers wcrc gcncrally different. We did not obscrvc any gcncral corrclation hctwccn thc potcncy of thc high-affinity enantiomer and Lhc affinity ratio (cudismic ratio) of the two cnantiomcrs. Thc rcsuhs arc discusscd in tcrms of a 'four suhsitcs' binding modcl. KW - Anorganische Chemie KW - Muscarinic receptors KW - Hexahydro-difenidol KW - Oxyphencyclimine Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64237 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Camus, J. A1 - Tastenoy, M. A1 - Mutschler, E. A1 - Strohmann, C. A1 - Tacke, Reinhold A1 - Lambrecht, G. A1 - Christophe, J. T1 - Binding affinities of hexahydro-difenidol and hexahydro-sila-difenidol analogues at four muscarinic receptor subtypes: constitutional and stereochemical aspects N2 - Hexahydro-sila-difenidoJ and eight analogues behaved as simple cumpetitive inhibitors of eHJN·methyl·scopoJamine binding to homogenates frorn human neuroblastoma NB-OK 1 cells (M\(_1\) sites), rat heart (M\(_2\) sites), rat pancreas (M\(_3\) sites), and rat striatum 'B' sites (M\(_4\) sites). Pyrrolidino- and hexamethyleneimino analogues showed the same sekctivity profile as the parent compound. Hexahydro-sila-difenidol methiodide and the methiodide of p-fluoro-hexahydro·sila-difenidol had a fügher affinity but a lower selectivity than the tertiary amines. Compounds containing a p·methoxy, p-chJoro or p-fluoro substituent in the phenyl ring of hexahydro-sila-difenidol showed a qualitative)y similar selectivity profile as the parent compound (i.e., M\(_1\)= M\(_3\) = M\(_4\) >M\(_2\) ), but up to 16-fold lower affinities. o-Methoxy-hexahydro-sila-difenidol has a lower affinity than hexahydro-sila-difeni.:!o! at the four binding sites. lts selectivity profile (M\(_4\) > M\(_1\), M\(_3\) > M\(_2\) ) was different from hexahydro-sila-difenidol. Replacement of the centrat silicon atom of hexahydro-sila-difenidol, p-fluoro-hexahydro-sila-difenidol and thdr quatemary (N-methylated) analogues by a carbon atom did not change their binding affinities significantly. The iour muscarinic receptors showed a higher affinity for the (R)- than for the (S)-enantiomers of hexahydro-difenidol, p-fluorohexahydro-difenidol and their methiodides. The stereoselectivity varied depending on the receptor subtype and drug considered. KW - Anorganische Chemie KW - Muscarinic receptor antagonists (selective) KW - Hexahydro-sila-difenidol analogues KW - p-Fluoro-hexahydro-sila-difenidol KW - Stereoselectivity Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64128 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Camus, J. A1 - Tastenoy, M. A1 - Mutschler, E. A1 - Strohmann, C. A1 - Tacke, Reinhold A1 - Lambrecht, G. A1 - Christophe, J. T1 - Stereoselectivity of (R)- and (S)-hexahydro-difenidol binding to neuroblastoma M\(_1\), cardiac M\(_2\), pancreatic M\(_3\), and striatum M\(_4\) muscarinic receptors N2 - (R)-Hexahydro-difenidol has a higher affinity for M\(_1\) receptors in NB-OK 1 cells, pancreas M\(_3\) and striatum M\(_4\) receptors (pKi 7.9 to 8.3) than for cardiac M2 receptors (pKi 7 .0). (8)-Hexahydro-difenidol, by contrast, is nonselective (pKi 5.8 to 6.1). Our goal in the present study was to evaluate the importance ofthe hydrophobic phenyl, and cyclohexyl rings of hexahydro-difenidol for the stereoselectivity and reeeptor selectivity of hexahydro-difenidol binding to the four muscarinic receptors. Our results indieated that replacement of the phenyl ring of hexahydro-difenidol by a cyclohexyl group <~ dicyclidol) and ofthe cyclohexyl ring by a phenyl moiety <~ difenidol) indueed a !arge (4- to 80-fold) decrease in binding affinity for all musearlnie receptors. Difenidol had a signifieant preference for M\(_1\) , M\(_3\) , and M\(_4\) over M\(_2\) receptors; dicyclidol, by eontrast, had a greater affinity for M\(_1\) and M\(_4\) than for M\(_2\) and M\(_3\) receptors. The binding free energy deerease due to replacement ofthe phenyl and the cyelohexyl groups of(R)-hexahydro-difenidol by, respectively, a eyclohexyl and a phenyl moiety was almostadditive in the ease of M\(_4\) (striatum) binding sites. In the ease ofthe cardiac M\(_2\), pancreatic M\(_3\) , or NB-OK 1 M\(_1\) receptors the respective binding free energies were not eompletely additive. These results suggest that the four (R)-hexahydro-difenidol ''binding moieties" (phenyl, cyclohexyl, hydroxy, and protonated amino group) cannot simultaneously form optimal interaetions with the M\(_1\), M\(_2\), and M\(_3\) muscarinic receptors. When eaeh of the hydrophobic groups is modified, the position of the whole molecule, relative to the four subsites, was changed to allow an optimal overall interaction with the musearlnie receptor. KW - Anorganische Chemie KW - hexahydro-difenidol enantiomers KW - muscarinic receptor subtypes KW - stereoselective interaction KW - difenidol KW - dicyclidol Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64135 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Camus, J. A1 - Tastenoy, M. A1 - Lambrecht, G. A1 - Mutschler, E. A1 - Tacke, Reinhold A1 - Christophe, J. T1 - Stereoselectivity of procyclidine binding to muscarinic receptor subtypes M\(_1\), M\(_2\) and M\(_4\) N2 - The goals of the present study were: (1) to investigate thc binding properlies oi (R)- and (S)-procyclidine and two aehiral derivatives of muscarinic M\(_1\)• M\(_2\) and M\(_4\) receptor subtypes and (2) to identify the interaetions which allow these receptors to diseriminate between the two stereoisomers. (R)-Procyclidine showed a higher affinity for human neuroblastoma NB-OK 1 muscarinie M\(_1\) and rat striatum musearinie M\(_4\) receptors. a~ compared to rat cardiac M\(_2\) receptors. (S)-Procyclidine had a 130-iold lower affinity than (R)-procyclidine for M\(_1\) and M\(_4\) receptors. and a 40-fold lower affinity for M\(_2\) receptors. Pyrrinol. the aehiral diphenyl derivative with the eyclohexyl g.roup of (S}-procyclidine replaeed by a phenyl group, has an eight-fold lower affinity for M\(_1\) and M\(_4\) receptors. as eompared to (R)-procyclidine, and a three-fold lower affinity for M\(_2\) receptors. Hexahydro-procyclidine. the eorresponding achiral dicyclohexyl compound, had a 10- to 20-fold lower affinity than (R)-procyclidine for the three reeeptors. The inerease in binding free energy, which is observed when the phenyl and eyclohexyl groups of procyelidine are separately replaeed by cyclohexyJ and phenyl groups, respectively. was additive in the ease of M\(_1\)• M\(_2\) and M\(_4\) receptcrs. This indicates that the musearinic reeeptor s!ereoseleetivity was based on the eoexistence of two binding sites, one preferring a phenylrather than eyclohexyl group and the seeond preferring a cyclohexyl rather than a phenyl group. In addition. there were aiso binding sites for the hydroxy moiety and the protonated amino group of the ligands. The greater affinity and stereoselectivity of M\(_1\) and M\(_4\) muscarinic receptors for (R)-procyelidine reflected the better fit of the eyclohexyl group of (R)-procyclidine to the subsite of M\(_1\) and M\(_4\) as compared to M\(_2\) receptors. KW - Anorganische Chemie KW - Musearlnie M1 KW - receptors KW - Muscarinie M2 receptors KW - Musearinic M4 receptors KW - Pyrrinol KW - Hexahydro-procyclidine KW - Muscarinic receptors Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64034 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Camus, J. A1 - Tastenoy, M. A1 - Lambrecht, G. A1 - Mutschler, E. A1 - Kropfgans, M. A1 - Sperlich, J. A1 - Wiesenberger, F. A1 - Tacke, R. A1 - Christophe, J. T1 - Thermodynamics of antagonist binding to rat muscarinic \(M_2\) receptors: antimuscarinics of the pridinol, sila-pridinol, diphenidol and sila-diphenidol type JF - British Journal of Pharmacology N2 - 1 We studied the effect of temperature on the binding to rat heart \(M_2\) muscarinic receptors of antagonists related to the carbon/silicon pairs pridinol/sila-pridinol and diphenidol/sila-diphenidol (including three germanium compounds) and six structurally related pairs of enantiomers [(R)- and (S)-procyclidine, (R)- and (S)-trihexyphenidyl, (R)- and (S)-tricyclamol, (R)- and (S)-trihexyphenidyl methiodide, (R)- and (S)-hexahydro-diphenidol and (R)- and (S)-hexbutinol]. Binding affinities were determined in competition experiments using \([^3H]\)-N-methyl-scopolamine chloride as radioligand. The reference drugs were scopolamine and N-methyl-scopolamine bromide. 2 The affinity of the antagonists either increased or decreased with temperature, van 't Hoff plots were linear in the 278–310°K temperature range. Binding of all antagonists was entropy driven. Enthalpy changes varied from large negative values (down to \(−29 kJ mol^{−1}\)) to large positive values (up to \(+ 30 kJ mol^{−1}\)). 3 (R)-configurated drugs had a 10 to 100 fold greater affinity for \(M_2\) receptors than the corresponding (S)-enantiomers. Enthalpy and entropy changes of the respective enantiomers were different but no consistent pattern was observed. 4 When silanols \((R_3SiOH)\) were compared to carbinols \((R_3COH)\), the affinity increase caused by C/Si exchange varied between 3 and 10 fold for achiral drugs but was negligible in the case of chiral drugs. Silanols induced more favourable enthalpy and less favourable entropy changes than the corresponding carbinols when binding. Organogermanium compounds \((R_4Ge)\) when compared to their silicon counterparts (R4Si) showed no significant difference in affinity as well as in enthalpy and entropy changes. 5 Exchange of a cyclohexyl by a phenyl moiety was associated with an increase or a decrease in drug affinity (depending on the absolute configuration in the case of chiral drugs) and generally also with a more favourable enthalpy change and a less favourable entropy change of drug binding. 6 Replacement of a pyrrolidino by a piperidino group and increasing the length of the alkylene chain bridging the amino group and the central carbon or silicon atom were associated with either an increase or a decrease of entropy and enthalpy changes of drug binding. However, there was no clear correlation between these structural variations and the thermodynamic effects. 7 Taken together, these results suggest that hydrogen bond-forming OH groups and, to a lesser extent, polarizable phenyl groups contribute significantly to the thermodynamics of interactions between these classes of muscarinic antagonists and \(M_2\) muscarinic receptors. KW - entropy KW - binding KW - M2 muscarinic receptors KW - thermodynamics KW - van 't Hoff plot KW - enthalpy Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-128439 VL - 109 IS - 2 ER - TY - JOUR A1 - Waelbroeck, M. A1 - Camus, J. A1 - Tastenoy, M. A1 - Feifel, R. A1 - Mutschler, E. A1 - Tacke, R. A1 - Strohmann, C. A1 - Rafeiner, K. A1 - Rodrigues de Miranda, J. F. A1 - Lambrecht, G. T1 - Binding and functional properties of hexocyclium and sila-hexocyclium derivatives to muscarinic receptor suhtypes JF - British Journal of Pharmacology N2 - 1 We have compared the binding properties of several hexocyclium and sila-hexocyclium derivatives to muscarinic Ml receptors (in rat brain, human neuroblastoma (NB-OK I) cells and calf superior cervical ganglia), rat heart M2 receptors, rat pancreas M3 receptors and M4 receptors in rat striatum, with their functional antimuscarinic properties in rabbit vas deferens (Ml/M4-like), guinea-pig atria (M2), and guinea-pig ileum (M3) muscarinic receptors. 2 Si la-substitution (C/Si exchange) of hexocyclium (~ sila-hexocyclium) and demethyl-hexocyclium (~demethyl-sila-hexocyclium) did not significantly affect their affinities for muscarinic receptors. By contrast, sila-substitution of demethoxy-hexocyclium increased its affinity 2 to 3 fold for all the muscarinic receptor subtypes studied. 3 The p-fluoro- and p-chloro-derivatives of sila-hexocyclium had lower affinities than the parent compound at the four receptor subtypes, in binding and pharmacological studies. 4 In binding studies, o-methoxy-sila-hexocyclium (Ml = M4 ~ M3 ~ M2) had a much lower affinity than sila-hexocyclium for the four receptor subtypes, and discriminated the receptor subtypes more poorly than sila-hexocyclium (Ml = M3> M4> M2)' This is in marked contrast with the very clear selectivity of demethoxy-sila-hexocyclium for the prejunctional MtlM4-like heteroreceptors in rabbit vas deferens. 5 The tertiary amines demethyl-hexocyclium, demethyl-sila-hexocyclium and demethyl-o-methoxy-silahexocyclium had 10 to 30 fold lower affinities than the corresponding quaternary ammonium derivatives. KW - Hexocyclium/sila-hexocyclium derivatives KW - o-methoxy-sila-hexocyclium KW - muscarinic receptor subtypes KW - structure/ affinity relationships KW - binding/functional correlations KW - muscarinic receptor antagonists Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-128265 VL - 112 ER - TY - JOUR A1 - Verspohl, E. J. A1 - Tacke, Reinhold A1 - Mutschler, E. A1 - Lambrecht, G. T1 - Muscarinic receptor subtypes in rat pancreatic islets: binding and functional studies N2 - Cholinergie agents arepotent modulators of insulin release that aet via musearinie reeeptors. We now investigated the muscarinic receptor subtype present in rat panereatic islets in binding and funetional studies. Binding of 5 nM [ \(^3\)H]N-methylscopolamine ([\(^3\)H]NMS) was half maximal at 30 min. At 60 min, the maximal total bindingwas 1.29% and the non-specifie binding (presence of 100 ,uM atropine) was 0.18% of the total radioaetivity per 10 f.'g islet protein. Unlabelled atropine inhibited [\(^3\)H]NMS binding with an IC50 of ca. 30 nM. The rank order of antagonist high-affinity binding was atropine > sila-hexocyelium methyl sulfate (SiHC; M\(_1\) > M\(_3\) > M\(_2\) ) > pirenzepine (M\(_1\)> M\(_2\) = M\(_3\) ) = methoctramine (M\(_2\) > M\(_1\) > M\(_3\) ). The high-affinity K\(_d\)s were 8.5, 56, 1300 and 1300 nM, respectively. The high affinity Kd of the muscarinie receptor agonist, arecaidine propargyl ester (APE), was 8.1 nM. The EC\(_{50}\) for the biologieal effects of APE on insulin and glucagon secretion was 3.2 and 2.3 nM. The rank order for the high-affinity biological effects of antagonists (inhibition of APE-mediated insulin/ glucagon release) was almost the same as for binding. The data indicate that rat pancreatie islets contain neither an M\(_1\) subtype (high-affinity for pirenzepine) nor an M\(_2\) subtype (high-affinity for methoctramine) receptor. However, the data evidence an M\(_3\) receptor subtype, since SiHC in the absence of the M\(_1\) receptor subtype shows a relatively high affinity to the receptors in rat panereatic islets. KW - Anorganische Chemie KW - Muscarinic receptor subtypes KW - Islets of Langerhans (rat) KW - Insulin KW - Glucagon Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63993 ER - TY - JOUR A1 - Tumir, Lidija-Marija A1 - Pavlović Saftić, Dijana A1 - Crnolatac, Ivo A1 - Ban, Željka A1 - Maslać, Matea A1 - Griesbeck, Stefanie A1 - Marder, Todd B. A1 - Piantanida, Ivo T1 - The nature of the (oligo/hetero)arene linker connecting two triarylborane cations controls fluorimetric and circular dichroism sensing of various ds-DNAs and ds-RNAs JF - Molecules N2 - A series of tetracationic bis-triarylborane dyes, differing in the aromatic linker connecting two dicationic triarylborane moieties, showed very high submicromolar affinities toward ds-DNA and ds-RNA. The linker strongly influenced the emissive properties of triarylborane cations and controlled the fluorimetric response of dyes. The fluorene-analog shows the most selective fluorescence response between AT-DNA, GC-DNA, and AU-RNA, the pyrene-analog’s emission is non-selectively enhanced by all DNA/RNA, and the dithienyl-diketopyrrolopyrrole analog’s emission is strongly quenched upon DNA/RNA binding. The emission properties of the biphenyl-analog were not applicable, but the compound showed specific induced circular dichroism (ICD) signals only for AT-sequence-containing ds-DNAs, whereas the pyrene-analog ICD signals were specific for AT-DNA with respect to GC-DNA, and also recognized AU-RNA by giving a different ICD pattern from that observed upon interaction with AT-DNA. The fluorene- and dithienyl-diketopyrrolopyrrole analogs were ICD-signal silent. Thus, fine-tuning of the aromatic linker properties connecting two triarylborane dications can be used for the dual sensing (fluorimetric and CD) of various ds-DNA/RNA secondary structures, depending on the steric properties of the DNA/RNA grooves. KW - triarylborane KW - fluorescent probe KW - circular dichroism KW - DNA recognition KW - RNA recognition Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-319322 SN - 1420-3049 VL - 28 IS - 11 ER - TY - JOUR A1 - Tinajero-Trejo, Mariana A1 - Rana, Namrata A1 - Nagel, Christoph A1 - Jesse, Helen E. A1 - Smith, Thomas W. A1 - Wareham, Lauren K. A1 - Hippler, Michael A1 - Schatzschneider, Ulrich A1 - Poole, Robert K. T1 - Antimicrobial Activity of the Manganese Photoactivated Carbon Monoxide-Releasing Molecule [Mn(CO)\(_3\)(tpa-kappa\(^3\)N)]\(^+\) Against a Pathogenic Escherichia coli that Causes Urinary Infections JF - Antioxidants & Redox Signaling N2 - Aims: We set out to investigate the antibacterial activity of a new Mn-based photoactivated carbon monoxide-releasing molecule (PhotoCORM, [Mn(CO)\(_3\)(tpa-kappa\(^3\)N)]\(^+\)) against an antibiotic-resistant uropathogenic strain (EC958) of Escherichia coli. Results: Activated PhotoCORM inhibits growth and decreases viability of E. coli EC958, but non-illuminated carbon monoxide-releasing molecule (CORM) is without effect. NADH-supported respiration rates are significantly decreased by activated PhotoCORM, mimicking the effect of dissolved CO gas. CO from the PhotoCORM binds to intracellular targets, namely respiratory oxidases in strain EC958 and a bacterial globin heterologously expressed in strain K-12. However, unlike previously characterized CORMs, the PhotoCORM is not significantly accumulated in cells, as deduced from the cellular manganese content. Activated PhotoCORM reacts avidly with hydrogen peroxide producing hydroxyl radicals; the observed peroxide-enhanced toxicity of the PhotoCORM is ameliorated by thiourea. The PhotoCORM also potentiates the effect of the antibiotic, doxycycline. Innovation: The present work investigates for the first time the antimicrobial activity of a light-activated PhotoCORM against an antibiotic-resistant pathogen. A comprehensive study of the effects of the PhotoCORM and its derivative molecules upon illumination is performed and mechanisms of toxicity of the activated PhotoCORM are investigated. Conclusion: The PhotoCORM allows a site-specific and time-controlled release of CO in bacterial cultures and has the potential to provide much needed information on the generality of CORM activities in biology. Understanding the mechanism(s) of activated PhotoCORM toxicity will be key in exploring the potential of this and similar compounds as antimicrobial agents, perhaps in combinatorial therapies with other agents. KW - intracellular hydrogen-peroxide KW - campylobacter-jejuni KW - oxygen-metabolism KW - deficient mutant KW - oxidative stress KW - aqueous-solution KW - metal caponyls KW - RU(CO)(3)CL(GLYCINATE) KW - bacteria KW - enzyme Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-188910 VL - 24 IS - 14 ER - TY - THES A1 - Tian, Yaming T1 - Selective C-X and C-H Borylation by N-Heterocyclic Carbene Nickel(0) Complex T1 - Selektive C-X und C-H Borylierung mittels N-Heterozyklischer Carben Nickel(0) Komplexe N2 - Organoboron compounds are important building blocks in organic synthesis, materials science, and drug discovery. The development of practical and convenient ways to synthesize boronate esters attracted significant interest. Photoinduced borylations originated with stoichiometric reactions of arenes and alkanes with well-defined metal-boryl complexes. Now photoredox-initiated borylations, catalyzed either by transition-metal or organic photocatalysts, and photochemical borylations with high efficiency have become a burgeoning area of research. In this chapter, we summarize research in the field of photocatalytic C-X borylation, especially emphasizing recent developments and trends, based on transition-metal catalysis, metal-free organocatalysis and direct photochemical activation. We focus on reaction mechanisms involving single electron transfer (SET), triplet energy transfer (TET), and other radical processes. We developed a highly selective photocatalytic C-F borylation method that employs a rhodium biphenyl complex as a triplet sensitizer and the nickel catalyst [Ni(IMes)2] (IMes = 1,3-dimesitylimidazolin-2-ylidene) for the C-F bond activation and defluoroborylation process. This tandem catalyst system operates with visible (400 nm) light and achieves borylation of a wide range of fluoroarenes with B2pin2 at room temperature in excellent yields and with high selectivity. Direct irradiation of the intermediary C-F bond oxidative addition product trans-[NiF(ArF)(IMes)2] leads to fast decomposition when B2pin2 is present. This destructive pathway can be bypassed by indirect excitation of the triplet states of the nickel(II) complex via the photoexcited rhodium biphenyl complex. Mechanistic studies suggest that the exceptionally long-lived triplet excited state of the Rh biphenyl complex used as the photosensitizer allows for efficient triplet energy transfer to trans-[NiF(ArF)(IMes)2], which leads to dissociation of one of the NHC ligands. This contrasts with the majority of current photocatalytic transformations, which employ transition metals as excited state single electron transfer agents. We have previously reported that C(arene)-F bond activation with [Ni(IMes)2] is facile at room temperature, but that the transmetalation step with B2pin2 is associated with a high energy barrier. Thus, this triplet energy transfer ultimately leads to a greatly enhanced rate constant for the transmetalation step and thus for the whole borylation process. While addition of a fluoride source such as CsF enhances the yield, it is not absolutely required. We attribute this yield-enhancing effect to (i) formation of an anionic adduct of B2pin2, i.e. FB2pin2-, as an efficient, much more nucleophilic {Bpin-} transfer reagent for the borylation/transmetalation process, and/or (ii) trapping of the Lewis acidic side product FBpin by formation of [F2Bpin]- to avoid the formation of a significant amount of NHC-FBpin and consequently of decomposition of {Ni(NHC)2} species in the reaction mixture. We reported a highly selective and general photo-induced C-Cl borylation protocol that employs [Ni(IMes)2] (IMes = 1,3-dimesitylimidazoline-2-ylidene) for the radical borylation of chloroarenes. This photo-induced system operates with visible light (400 nm) and achieves borylation of a wide range of chloroarenes with B2pin2 at room temperature in excellent yields and with high selectivity, thereby demonstrating its broad utility and functional group tolerance. Mechanistic investigations suggest that the borylation reactions proceed via a radical process. EPR studies demonstrate that [Ni(IMes)2] undergoes very fast chlorine atom abstraction from aryl chlorides to give [NiI(IMes)2Cl] and aryl radicals. Control experiments indicate that light promotes the reaction of [NiI(IMes)2Cl] with aryl chlorides generating additional aryl radicals and [NiII(IMes)2Cl2]. The aryl radicals react with an anionic sp2-sp3 diborane [B2pin2(OMe)]- formed from B2pin2 and KOMe to yield the corresponding borylation product and the [Bpin(OMe)]•- radical anion, which reduces [NiII(IMes)2Cl2] under irradiation to regenerate [NiI(IMes)2Cl] and [Ni(IMes)2] for the next catalytic cycle. A highly efficient and general protocol for traceless, directed C3-selective C-H borylation of indoles with [Ni(IMes)2] as the catalyst was achieved. Activation and borylation of N-H bonds by [Ni(IMes)2] is essential to install a Bpin moiety at the N-position as a traceless directing group, which enables the C3-selective borylation of C-H bonds. The N-Bpin group which is formed is easily converted in situ back to an N-H group by the oxidiative addition product of [Ni(IMes)2] and in situ-generated HBpin. The catalytic reactions are operationally simple, allowing borylation of of a variety of substituted indoles with B2pin2 in excellent yields and with high selectivity. The C-H borylation can be followed by Suzuki-Miyaura cross-coupling of the C-borylated indoles in an overall two-step, one-pot process providing an efficient method for synthesizing C3-functionalized heteroarenes. N2 - Es wurden effiziente und allgemeine Methoden für die selektive C-B-Verknüpfung mittels [Ni(IMes)2]-katalysierter Borylierungen von Arylfluoriden, Arylchloriden und substituierten Indolen entwickelt, welches alles leicht verfügbare Substrate sind. ... KW - Organoboron Compounds KW - N-Heterocyclic Carbene KW - Borylation KW - Photocatalysis KW - C-F KW - C-Cl KW - C-H KW - Nickel KW - Rhodium KW - Borylierung KW - Heterocyclische Carbene <-N> KW - Nickelkomplexe Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-213004 ER - TY - JOUR A1 - Thiess, Torsten A1 - Mellerup, Soren K. A1 - Braunschweig, Holger T1 - B–B Cleavage and Ring-Expansion of a 1,4,2,3-Diazadiborinine with N-Heterocyclic Carbenes JF - Chemistry - A European Journal N2 - A 1,4,2,3‐diazadiborinine derivative was found to form Lewis adducts with strong two‐electron donors such as N‐heterocyclic and cyclic (alkyl)(amino)carbenes. Depending on the donor, some of these Lewis pairs are thermally unstable, converting to sole B,N‐embedded products upon gentle heating. The products of these reactions, which have been fully characterized by NMR spectroscopy, elemental analysis, and single‐crystal X‐ray diffraction, were identified as B,N‐heterocycles with fused 1,5,2,4‐diazadiborepine and 1,4,2‐diazaborinine rings. Computational modelling of the reaction mechanism provides insight into the formation of these unique structures, suggesting that a series of B−H, C−N, and B−B bond activation steps are responsible for these “intercalation” reactions between the 1,4,2,3‐diazadiborinine and NHCs. KW - B,N-heterocylcles KW - B-B bond activation KW - diazadiborinines KW - NHCs KW - ring-expansion reactions Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-206173 VL - 25 IS - 59 ER - TY - JOUR A1 - Thiess, Torsten A1 - Ernst, Moritz A1 - Kupfer, Thomas A1 - Braunschweig, Holger T1 - Facile Access to Substituted 1,4‐Diaza‐2,3‐Diborinines JF - Chemistry – A European Journal N2 - Several bis(dimethylamino)‐substituted 1,4‐diaza‐2,3‐diborinines (DADBs) were synthesized with variable substituents at the backbone nitrogen atoms. By reaction with HCl or BX\(_{3}\) (X=Br, I), these species were successfully converted into their synthetically more useful halide congeners. The high versatility of the generated B−X bonds in further functionalization reactions at the boron centers was demonstrated by means of salt elimination (MeLi) and commutation (NMe\(_{2}\) DADBs) reactions, thus making the DADB system a general structural motif in diborane(4) chemistry. A total of 18 DADB derivatives were characterized in the solid state by X‐ray diffraction, revealing a strong dependence of the heterocyclic bonding parameters from the exocyclic substitution pattern at boron. According to our experiments towards the realization of a Dipp‐substituted, sterically encumbered DADB, the mechanism of DADB formation proceeds via a transient four‐membered azadiboretidine intermediate that subsequently undergoes ring expansion to afford the six‐membered DADB heterocycle. KW - azadiboretidines KW - B,N-heterocycles KW - diazadiborinines KW - diboranes KW - ring expansion Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-214650 VL - 26 IS - 13 SP - 2967 EP - 2972 ER - TY - JOUR A1 - Tendera, Lukas A1 - Schaub, Thomas A1 - Krahfuss, Mirjam J. A1 - Kuntze‐Fechner, Maximilian W. A1 - Radius, Udo T1 - Large vs. Small NHC Ligands in Nickel(0) Complexes: The Coordination of Olefins, Ketones and Aldehydes at [Ni(NHC)\(_{2}\)] JF - European Journal of Inorganic Chemistry N2 - Investigations concerning the reactivity of Ni(0) complexes [Ni(NHC)\(_{2}\)] of NHCs (N‐heterocyclic carbene) of different steric demand, Mes\(_{2}\)Im (= 1,3‐dimesitylimidazoline‐2‐ylidene) and iPr\(_{2}\)Im (= 1,3‐diisopropyl‐imidazoline‐2‐ylidene), with olefins, ketones and aldehydes are reported. The reaction of [Ni(Mes\(_{2}\)Im)\(_{2}\)] 1 with ethylene or methyl acrylate afforded the complexes [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐C\(_{2}\)H\(_{4}\))] 3 and [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐(C,C)‐H\(_{2}\)C=CHCOOMe)] 4, as it was previously reported for [Ni\(_{2}\)(iPr\(_{2}\)Im)\(_{4}\)(µ‐(η\(^{2}\):η\(^{2}\))‐COD)] 2 as a source for [Ni(iPr\(_{2}\)Im)\(_{2}\)]. In contrast to 2, complex 1 does not react with sterically more demanding olefins such as tetramethylethylene, 1,1‐diphenylethylene and cyclohexene. The reaction of [Ni(NHC)\(_{2}\)] with more π‐acidic ketones or aldehydes led to formation of complexes with side‐on η\(^{2}\)‐(C,O)‐coordinating ligands: [Ni(iPr\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CH\(^{t}\)Bu)] 5, [Ni(iPr\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CHPh)] 6, [Ni(iPr\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CMePh)] 7, [Ni(iPr\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CPh\(_{2}\))] 8, [Ni(iPr\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=C(4‐F‐C\(_{6}\)H\(_{4}\))\(_{2}\))] 9, [Ni(iPr\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=C(OMe)(CF\(_{3}\)))] 10 and [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CHPh)] 11, [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CH(CH(CH\(_{3}\))\(_{2}\)))] 12, [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CH(4‐NMe\(_{2}\)‐C\(_{6}\)H\(_{4}\)))] 13, [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CH(4‐OMe‐C\(_{6}\)H\(_{4}\)))] 14, [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=CPh\(_{2}\))] 15 and [Ni(Mes\(_{2}\)Im)\(_{2}\)(η\(^{2}\)‐O=C(4‐F‐C\(_{6}\)H\(_{4}\))\(_{2}\))] 16. The reaction of 1 and 2 with these simple aldehydes and ketones does not lead to a significantly different outcome, but NHC ligand rotation is hindered for the Mes\(_{2}\)Im complexes 3, 4 and 11–16 according to NMR spectroscopy. The solid‐state structures of 3, 4, 11 and 12 reveal significantly larger C\(_{NHC}\)‐Ni‐C\(_{NHC}\) angles in the Mes\(_{2}\)Im complexes compared to the iPr\(_{2}\)Im complexes. As electron transfer in d\(^{8}\)‐ (or d\(^{10}\)‐) ML\(_{2}\) complexes to π‐acidic ligands depends on the L–M–L bite angle, the different NHCs lead thus to a different degree of electron transfer and activation of the olefin, aldehyde or ketone ligand, i.e., [Ni(iPr\(_{2}\)Im)\(_{2}\)] is the better donor to these π‐acidic ligands. Furthermore, we identified two different side products from the reaction of 1 with benzaldehyde, trans‐[Ni(Mes\(_{2}\)Im)\(_{2}\)H(OOCPh)] 17 and [Ni\(_{2}\)(Mes\(_{2}\)Im)\(_{2}\)(µ\(_{2}\)‐CO)(µ\(_{2}\)‐η\(^{2}\)‐C,O‐PhCOCOPh)] 18, which indicate that radical intermediates and electron transfer processes might be of importance in the reaction of 1 with aldehydes and ketones. KW - Nickel Complexes KW - N‐Heterocyclic Carbenes KW - NHC Complexes KW - Olefin Complexes KW - Aldehyde Complexes Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-216058 VL - 2020 IS - 33 SP - 3194 EP - 3207 ER - TY - JOUR A1 - Tendera, Lukas A1 - Luff, Martin S. A1 - Krummenacher, Ivo A1 - Radius, Udo T1 - Cationic Nickel d\(^{9}\)‐Metalloradicals [Ni(NHC)\(_{2}\)]\(^{+}\) JF - European Journal of Inorganic Chemistry N2 - A series of five new homoleptic, linear nickel d\(^{9}\)‐complexes of the type [Ni\(^{I}\)(NHC)\(_{2}\)]\(^{+}\) is reported. Starting from the literature known Ni(0) complexes [Ni(Mes\(_{2}\)Im)\(_{2}\)] 1, [Ni(Mes\(_{2}\)Im\(^{H2}\))2] 2, [Ni(Dipp\(_{2}\)Im)\(_{2}\)] 3, [Ni(Dipp\(_{2}\)Im\(^{H2}\))\(_{2}\)] 4 and [Ni(cAAC\(^{Me}\))\(_{2}\)] 5 (Mes\(_{2}\)Im=1,3‐bis(2,4,6‐trimethylphenyl)‐imidazolin‐2‐ylidene, Mes\(_{2}\)Im\(^{H2}\)=1,3‐bis(2,4,6‐trimethylphenyl)‐imidazolidin‐2‐ylidene, Dipp\(_{2}\)Im=1,3‐bis(2,6‐diisopropylphenyl)‐imidazolin‐2‐ylidene, Dipp\(_{2}\)Im\(^{H2}\)=1,3‐bis(2,6‐diisopropylphenyl)‐imidazolidin‐2‐ylidene, cAAC\(^{Me}\)=1‐(2,6‐diisopropylphenyl)‐3,3,5,5‐tetramethylpyrrolidin‐2‐yliden), their oxidized Ni(I) analogues [Ni\(^{I}\)(Mes\(_{2}\)Im)\(_{2}\)][BPh\(_{4}\)] 1\(^{+}\), [Ni\(^{I}\)(Mes\(_{2}\)Im\(^{H2}\))\(_{2}\)][BPh\(_{4}\)] 2\(^{+}\), [Ni\(^{I}\)(Dipp\(_{2}\)Im)\(_{2}\)][BPh\(_{4}\)] 3\(^{+}\), [Ni\(^{I}\)(Dipp\(_{2}\)Im\(^{H2}\))\(_{2}\)][BPh\(_{4}\)] 4\(^{+}\) and [Ni\(^{I}\)(cAAC\(^{Me}\))\(_{2}\)][BPh\(_{4}\)] 5\(^{+}\) were synthesized by one‐electron oxidation with ferrocenium tetraphenyl‐borate. The complexes 1\(^{+}\)–5\(^{+}\) were fully characterized including X‐ray structure analysis. The complex cations reveal linear geometries in the solid state and NMR spectra with extremely broad, paramagnetically shifted resonances. DFT calculations predicted an orbitally degenerate ground state leading to large magnetic anisotropy, which was verified by EPR measurements in solution and on solid samples. The magnetic anisotropy of the complexes is highly dependent from the steric protection of the metal atom, which results in a noticeable decrease of the g‐tensor anisotropy for the N‐Mes substituted complexes 1\(^{+}\) and 2\(^{+}\) in solution due to the formation of T‐shaped THF adducts. KW - Alkyl(amino)carbene KW - EPR spectroscopy KW - Metalloradicals KW - Nickel ComplexCyclic Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-293702 VL - 2022 IS - 31 ER - TY - JOUR A1 - Tendera, Lukas A1 - Helm, Moritz A1 - Krahfuss, Mirjam A1 - Kuntze-Fechner, Maximilian W. A1 - Radius, Udo T1 - Case Study of N-\(^{i}\)Pr versus N-Mes Substituted NHC Ligands in Nickel Chemistry: The Coordination and Cyclotrimerization of Alkynes at [Ni(NHC)\(_{2}\)] JF - Chemistry—A European Journal N2 - A case study on the effect of the employment of two different NHC ligands in complexes [Ni(NHC)\(_{2}\)] (NHC=\(^{i}\)Pr\(_{2}\)Im\(^{Me}\) 1\(^{Me}\), Mes\(_{2}\)Im 2) and their behavior towards alkynes is reported. The reaction of a mixture of [Ni\(_{2}\)(\(^{i}\)Pr\(_{2}\)Im\(^{Me}\))\(_{4}\)(μ-(η\(^{2}\) : η\(^{2}\))-COD)] B/ [Ni(\(^{i}\)Pr\(_{2}\)Im\(^{Me}\))\(_{2}\)(η\(^{4}\)-COD)] B’ or [Ni(Mes\(_{2}\)Im)\(_{2}\)] 2, respectively, with alkynes afforded complexes [Ni(NHC)\(_{2}\)(η\(^{2}\)-alkyne)] (NHC=\(^{i}\)Pr\(_{2}\)Im\(^{Me}\): alkyne=MeC≡CMe 3, H\(_{7}\)C\(_{3}\)C≡CC\(_{3}\)H\(_{7}\) 4, PhC≡CPh 5, MeOOCC≡CCOOMe 6, Me\(_{3}\)SiC≡CSiMe\(_{3}\) 7, PhC≡CMe 8, HC≡CC\(_{3}\)H\(_{7}\) 9, HC≡CPh 10, HC≡C(p-Tol) 11, HC≡C(4-\(^{t}\)Bu-C\(_{6}\)H\(_{4}\)) 12, HC≡CCOOMe 13; NHC=Mes\(_{2}\)Im: alkyne=MeC≡CMe 14, MeOOCC≡CCOOMe 15, PhC≡CMe 16, HC≡C(4-\(^{t}\)Bu-C\(_{6}\)H\(_{4}\)) 17, HC≡CCOOMe 18). Unusual rearrangement products 11 a and 12 a were identified for the complexes of the terminal alkynes HC≡C(p-Tol) and HC≡C(4-\(^{t}\)Bu-C\(_{6}\)H\(_{4}\)), 11 and 12, which were formed by addition of a C−H bond of one of the NHC N-\(^{i}\)Pr methyl groups to the C≡C triple bond of the coordinated alkyne. Complex 2 catalyzes the cyclotrimerization of 2-butyne, 4-octyne, diphenylacetylene, dimethyl acetylendicarboxylate, 1-pentyne, phenylacetylene and methyl propiolate at ambient conditions, whereas 1\(^{Me}\) is not a good catalyst. The reaction of 2 with 2-butyne was monitored in some detail, which led to a mechanistic proposal for the cyclotrimerization at [Ni(NHC)\(_{2}\)]. DFT calculations reveal that the differences between 1\(^{Me}\) and 2 for alkyne cyclotrimerization lie in the energy profile of the initiation steps, which is very shallow for 2, and each step is associated with only a moderate energy change. The higher stability of 3 compared to 14 is attributed to a better electron transfer from the NHC to the metal to the alkyne ligand for the N-alkyl substituted NHC, to enhanced Ni-alkyne backbonding due to a smaller C\(_{NHC}\)−Ni−C\(_{NHC}\) bite angle, and to less steric repulsion of the smaller NHC \(^{i}\)Pr\(_{2}\)Im\(^{Me}\). KW - nickel complexes KW - cyclooligomerization KW - cyclotrimerization KW - alkyne complexes KW - N-heterocyclic carbenes Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-257137 VL - 27 IS - 71 ER - TY - THES A1 - Tendera, Lukas T1 - NHC-ligated Nickel(0)-Complexes: Bond Activation, Redox Behavior and Catalysis T1 - NHC-substituierte Nickel(0)-Komplexe: Bindungsaktivierung, Redoxeigenschaften und Katalyse N2 - This thesis describes the synthesis and reactivity of bis-NHC ligated nickel(0)-complexes and their application in catalytic cyclization and borylation reactions of alkynes. The focus of the presented work lies on the investigation of the electronic and steric impact of different NHC ligands on the reactivity and catalytic activity of [Ni(NHC)2] complexes. Since d10 ML2 complexes play a decisive role for numerous catalytic reactions, such as the Suzuki-Miyaura cross-coupling, the first chapter provides an overview about the general properties of NHCs and the chemistry of NHC-ligated nickel complexes, their synthesis, characterization, reactivity, and application in catalysis. N2 - Die vorliegende Arbeit befasst sich mit der Synthese und Reaktivität von zweifach NHC-stabilisierten Nickel(0)-Komplexen sowie deren Anwendung als Katalysatoren in Zyklisierungs- und Borylierungsreaktionen von Alkinen. Der Fokus liegt auf der Untersuchung von elektronischen und sterischen Einflüssen verschiedener NHC-Liganden auf die Reaktivität und katalytische Aktivität von [Ni(NHC)2]-Komplexen. Da solche d10-ML2 Komplexe heute für eine Vielzahl von katalytischen Reaktionen von immenser Bedeutung sind, wie z. B. der Suzuki-Miyaura-Kreuzkupplung, wird im ersten Kapitel ein Überblick über die grundlegenden Eigenschaften von NHCs und die Chemie NHC-substituierter Nickel-Komplexe, deren Synthese, Charakterisierung, Reaktivität und Anwendung in der Katalyse, gegeben. KW - Übergangsmetallkomplexe KW - N-heterozyklische Carbene KW - Nickel-Complexes KW - Borylation KW - Cyclotrimerization Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290654 ER - TY - JOUR A1 - Tanini, Damiano A1 - Pecchi, Tommaso A1 - Ignat’ev, Nikolai V. A1 - Capperucci, Antonella T1 - Ionic liquids-assisted ring opening of three-membered heterocycles with thio- and seleno-silanes JF - Catalysts N2 - Ring opening reactions of strained heterocycles (epoxides, aziridines, thiiranes) by silyl chalcogenides, such as thiosilanes and selenosilanes, can be efficiently performed in a variety of ionic liquids, which can behave as reaction media and in some cases also as catalysts. This protocol enables an alternative access to β-functionalized sulfides and selenides under mild conditions. KW - ring opening reactions KW - ionic liquids KW - silyl sulfides KW - silyl selenides KW - thiolysis KW - selenolysis Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290350 SN - 2073-4344 VL - 12 IS - 10 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Wuttke, F. A1 - Henke, H. T1 - Zur Stereochemie der mikrobiellen Reduktion von rac-Acetyl( t-butyl)methylphenylsilan mit Trigonopsis variabilis (DSM 70714) und Corynebacterium dioxydans (ATCC 21766): Aufklärung der absoluten Konfiguration der Biotransformationsprodukte (SiR,CR)- und ( SiS ,CR)-t-Butyl( 1-hydroxyethyl)methylphenylsilan N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64176 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Wagner, S. A. A1 - Brakmann, S. A1 - Wuttke, F. A1 - Eilert, U. A1 - Fischer, L. A1 - Syldatk, C. T1 - Synthesis of acetyldimethyl(phenyl)silane and its enantioselective conversion into (R)-(1-hydroxyethyl)dimethyl(phenyl)silane by plant cell suspension culytures of Symphytum officinale L. and Ruta graveolens L. N2 - Starting from chlorodimethyl(phenyl)silane (3), acetyldimethyl(phenyl)silane (l) was prepared by a two-step synthesis in a total yield of 90% [PhMe\(_2\)SiCl (3)-> PhMe\(_2\)SiCCOMe)=CH\(_2\) (4)-> PhMe\(_2\)SiC(O)Me (1)]. The prochiral acetylsilane 1 was transfonned enantioselectively into (R)-(1-hydroxyethyl)dimethyl(phenyl)silane [(R)-2] using plant cell Suspension cultures of Symphytum officinale L. or Ruta graveolens L. Under preparative conditions (300-mg scale, not optimized), (R)-2 was isolated in 15% (Symphytum) and 9% yield (Ruta), respectively. The enantiomeric purities of the products were 81% ee (Syrnphytum) and 60% ee (Ruta), respectively. KW - Anorganische Chemie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64299 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Strohmann, C. A1 - Sarge, S. A1 - Cammenga, H. K. A1 - Schomburg, D. A1 - Mutschler, E. A1 - Lambrecht, G. T1 - Darstellung und Eigenschaften der Enantiomere des selektiven Antimuscarinikums 1-Cyclohexyl-1-phenyl-4-piperidino-1-butanol (Hexahydro-Difenidol) N2 - No abstract available KW - Anorganische Chemie KW - Difenidol KW - (R)- and (S)-hexahydro- / Antimuscarinic properties / Muscarinic receptor subtypes Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63950 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Sperlich, J. A1 - Becker, B. T1 - Bis[2,3-naphthalenediolato(2-)](pyrrolidinio-methyl)germanate-tetartoacetonitrile, the first zwitterionic \(\lambda_5\)-germanate: synthesis and crystal structure analysis N2 - The zwitterionic spirocyclic \(\lambda_5\)-germanate bis(2,3-naphthalenediolato( 2-)](pyrrolidiniomethyl)germanate (8) was synthesized and the crystal structure of its tetartoacetonitrile solvate 8 · 1/4 CH\(_3\)CN studied by single-crystal X-ray diffraction. Compound 8 was prepared by reaction of (MeO)\(_3\)GeCH\(_2\)NC\(_4\)H\(_8\) (11; NC\(_4\)H\(_8\) = pyrrolidino) with two equivalents of 2,3-naphthalenediol (isolated as 8 · 1/4 CH\(_3\)CN; yield 92%). The coordination polyhedron around the pentacoordi- naphthalenediolatonate germanium atom of 8 · 1/4 CH\(_3\)CN can be described as a strongly distorted trigonal bipyramid (the structure is displaced by 38.9% from the ideal trigonal bipyrarnid towards the ideal square pyramid), the carbon atom occupying an equatorial position. In the crystal lattice of 8 · 1/4 CH\(_3\)CN, the zwitterions form intermolecular N-H ... o hydrogen bonds leading to the formation of dimers. 1H- and \(^{13}\C-NMR studies revealed that 8 also exists in solution ([D\(_6\)]DMSO). KW - Anorganische Chemie KW - Lambda5-Germanate KW - zwitterionic KW - Germanium KW - pentacoordinate Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64329 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Saad, S. M. T1 - Silylation of cellulose N2 - Ethane-l:2-diol and propane-l:3-diol reaet with 1: 1:3:3-tetramethyl-l:3-dichlorodisiloxane forming the corresponding rings. However, no ring compounds could be traced tbrough the reaction between butane-l :4-diol, glycerol and the dichlorodisiloxane respectively, where only polymeric compounds are formed. The silylation products of the di- and trihydroxy alcohols, as model compounds, has confirmed that the ring formation during silylation of cellulose with dichlorodisiloxane is uncertain. KW - Anorganische Chemie Y1 - 1977 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-78368 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Rafeiner, K. A1 - Strohmann, C. A1 - Mutschler, E. A1 - Lambrecht, G. T1 - Synthesis of the selective antimuscarinic agent 4-{[cyclohexylhydroxy(2-methoxyphenyl)silyl]methyl}-1,1-dimethylpiperazinium methyl sulfate (o-methoxy-sila-hexocyclium methyl sulfate) N2 - The synthesis of the potent and highly selective silicon-containing antimuscarinic agent o-methoxysila- hexocyclium methyl sulfate and its corresponding tertiary amine (isolated as the dihydrochloride) is described. The quarternary compound is an omethoxy derivative of sila-hexocyclium methyl sulfate, which represents one of the tools currently used in experimental pharmacology for the subclassification of muscarinic receptors. The omethoxy derivative, the pharmacological profile of which differs substantially from tbat of the nonmethoxy compound, is also recommended as a tool for the investigation of muscarinic receptor heterogeneity. KW - Anorganische Chemie KW - o-methoxy-sila-hexocyclium KW - silahexocyclium KW - sila-drugs KW - antimuscarinics KW - muscarinic receptor subtypes Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63930 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Pikies, J. A1 - Wiesenberger, F. A1 - Ernst, L. A1 - Schomburg, D. A1 - Waelbroeck, M. A1 - Christophe, J. A1 - Lambrecht, G. A1 - Gross, J. A1 - Mutschler, E. T1 - Sila-biperiden und endo-Sila-biperiden: Synthesen, Kristallstrukturen und antimuscarinische Eigenschaften N2 - Starting from trichloro(vinyl)silane (Cl\(_3\)SiCH=CH\(_2\)), the musearinic antagonists sila-biperiden [rac-(SiRS,C2SR>-ao-2] and endosila- biperiden [rac-(SiRS,C2SR)-endo-2] were prepared by a seven-step synthesis. Both silanols are configurationally stableininert organic solvents but undergo slow epimerization in aqueous solution (pH 7.4, 32°C) by inversion of the configuration at the silicon atom. The relative configurations of sila-biperiden and endo-sila-biperiden were detennined by single-crystal X-ray diffraction. Both compounds form intennolecular 0-H · · · N hydrogen bonds in the crystal leading to the fonnation of centrosymmetric dimers (sila-biperiden) and infinite chains (endo-sila-biperiden), respectively. Sila-biperiden is a silicon analogue (C/Si exchange) of the antiparkinsonian drug biperiden [rac-(CRS/C2SR}-exo-1]. In functional phannacological experiments, as well as in radioligand competition studies, biperiden, sila-biperiden and endo-sila-biperiden behaved as simple competitive antagonists at muscarinic Ml-, M2-, M3- and M4-receptors. The three compounds displayed the highest affinity for Ml-receptors (pA\(_2\) values: 8.72-8.80; pK\(_i\) values: 8.8-9.1), intermediate affinity for M4- and M3-receptors, and lowest affinity for M2-receptors (pA\(_2\) values: 7.57-7.79; pK\(_i\) values: 7.7-7.8). The affinity profile (Ml >. M4 > M3 > M2) of biperiden, sila-biperiden and endo-sila-biperiden is qualitatively similar to that of the M1-selective muscarinic antagonist pirenzepine. The antimuscarinic properlies of the C/Si analogues biperiden and sila-biperiden are almost identical. N2 - Die Antimuscarinica Sila-biperiden [rac-(SiRS,C2SR)-exo-2] und endo-Sila-biperiden [rac-(SiRS,C2SR)-endo-2] wurden ausgehend von Trichlor(vinyl)silan (Cl\(_3\)SiCH=CH\(_2\)) durch eine siebenstufige Synthese dargestellt. Die beiden Silanoie sind in inerten organischen Solvenzien konfigurationsstabil, unterliegen aber in wässeriger Lösung (pH 7.4, 3ZOC) einer Epimerisierung durch Inversion der Konfiguration am Silicium-Atom. Die relativen Konfigurationen von Sila-biperiden und endo-Sila-biperiden wurden durch Einkristall-Röntgenstrukturanalysen bestimmt. Beide Verbindungen bilden im Kristall intermolekulare 0-H · · · N-Wasserstoff- Brückenbindungen aus, die zum Aufbau von zentrosymmetrischen Dimeren (Sila-biperiden) bzw. unendlichen Ketten (endo-Sila-biperiden) führen. Sila-biperiden ist ein Silicium-Analogon (C/Si-Austausch) des Antiparkinsonmittels Biperiden [rac-(CRS,C2SR>-ao-1). Sowohl in funktionellen pharmakologischen Untersuchungen als auch in Radioligand-Kompetitionsexperimenten erwiesen sich Biperiden, Sila-biperiden und endo-Sila-biperiden als rein kompetitive Antagonisten an muscarinischen M1-, M2-, M3- und M4-Rezeptoren. Alle drei Verbindungen zeigten die höchste Affinität zu den Mt-Rezeptoren (pA\(_2\)-Werte: 8.72-8.80; pKrWerte: 8.8-9.1), eine deutlich geringere Affinität zu den M4- und M3-Rezeptoren und die niedrigste Affinität zu den kardialen M2-Rezeptoren (pA\(_2\)-Werte: 7.57-7.79; pKi-Werte: 7.7-7.8). Das Affinitätsprofil (Ml > M4 > M3 > M2) von Biperiden, Sila-biperiden und endo-Sila-biperiden ist dem des Mt-selektiven Antimuscarinicums Pirenzepin qualitativ sehr ähnlich. Die antimuscarinischen Eigenschaften der C/Si-Analoga Biperiden und Sila-biperiden sind nahezu identisch. KW - Anorganische Chemie KW - Silicon KW - Silanol KW - Sila-biperiden KW - Bioorganosilicon chemistry KW - Muscarinic antagonist KW - Muscarinic receptor subtype Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64303 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Mühleisen, M. A1 - Jones, P. G. T1 - The first zwitterionic, optically active disilicate with pentacoordinate silicon N2 - No abstract available KW - Anorganische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64358 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Mühleisen, M. T1 - Bis[benzilato(2-)-O\(^1\),O\(^2\)][2-(dimethylammonio)ethoxy]silicate: synthesis and structural characterization of a zwitterionic \(\lambda^5\)Si-silicate with a SiO\(_5\) framework N2 - No abstract available KW - Anorganische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64400 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Mühleisen, M. T1 - Hexacoordinate silicon in a compound with an F\(_5\)SiC unit N2 - No abstract available KW - Anorganische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64378 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Mahner, K. A1 - Strohmann, C. A1 - Forth, B. A1 - Mutschler, E. A1 - Friebe, T. A1 - Lambrecht, G. T1 - Cyclohexyl(4-fluorophenyl)(3-piperidinopropyl)silanol (p-fluoro-hexahydro-sila-difenidol, p-F-HHSiD) and derivatives: synthesis and antimuscarinic properties N2 - Four different syntheses of the potent and selective muscanruc antagonist cyclohexyl( 4- fluorophenyl)(3-piperidinopropyl)silanol ( p-fluoro-hexahydro-sila-difenidol, p-F-HHSiD (2b); isolated as hydrochloride 2b· HCl) are described (starting materials: (CH\(_3\)O)\(_2\)SiCH\(_2\)CH\(_2\)CH\(_2\)Cl and Si(OCH\(_3\))\(_4\) ). In addition, the synthesis of the corresponding carbon analogue p-fluoro-hexahydro-difenidol ( p-F-HHD (2a); isolated as 2a· HCI) and the syntheses of three p-F-HHSiD derivatives (3-5), with a modified cyclic amino group, are reported (3: piperidinojpyrrolidino exchange, isolated as 3· HCI; 4: piperidinoj hexamethylenimino exchange, isolated as 4 · HCl; 5: quaternization of 2b with methyl iodide). The chiral compounds 2a, 2b, 3, 4 and 5 were prepared as racemates. In functional pharmacological studies, 3-5 behaved as simple competitive antagonists at musearlnie Ml receptors in rabbit vas deferens, M2 receptors in guinea-pig atria, and M3 receptors in guinea-pig ileal smooth rnuscle. The pyrrolidino (3) and hexamethylenimino (4) analogues of the parent drug p-F-HHSiD (2b) displayed the highest affinity for Ml and M3 receptors (pA\(_2\) values: 7.0-7.4) but exhibited lower affinity for cardiac M2 receptors (pA\(_2\) : 5.9 and 6.0). Their affinity profile (Ml- M3 > M2) is different from that of p-F-HHSiD (2b) (M3 > Ml > M2), but qualitatively very similar tothat of p-F-HHD (2a). The methiodide 5 exhibited the highest affinity for Ml receptors (pA\(_2\) : 8.5) but lower affinity for M2 and M3 receptors by factors of 5.6 and 3.6, respectively. KW - Anorganische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64162 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Lopez-Mras, A. A1 - Jones, P. G. T1 - Syntheses, crystal structure analyses, and NMR studies of [2-(dimethylammonio)phenyl]bis[glycolato(2-)-O1,O2]silicate and related zwitterionic spirocyclic \(\lambda_5\)Si-silicates N2 - No abstract available KW - Anorganische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64339 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Hengelsberg, H. A1 - Zilch, H. A1 - Stumpf, B. T1 - Enantioselective microbial reduction of 1,1-dimethyl-1-sila-cyclohexan-2-one with growing cells of the yeast Kloeckera corticis (ATCC 20109) N2 - (R)-1,1-Dimethyl-1-sila-cyclohexan-2-ol [(R)-2] was prepared by enantioselective microbial reduction of 1,1-dimethyl-1-sila-cyclohexan-2-one (1) with growing cells of the yeast Kloeckera corticis (ATCC 20109). At a substrate concentration of 0.5 g/1 (temperature 27° C, incubation time 16 h), (R}-2 was obtained on a preparative scale in 60% yield and with an enantiomeric purity of 92% ee. Repeated recrystallization of the biotransformation product from n-hexane raised the enantiomeric purity to 99% ee. KW - Anorganische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64010 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Brakmann, S. A1 - Wuttke, F. A1 - Fooladi, J. A1 - Syldatk, C. A1 - Schomburg, D. T1 - Stereoselective microbial reduction of racemic acetyl(t-butyl)methylphenylsilane by Trigonopsis variabilis (DSM 70714) and Corynebacterium dioxydans (ATCC 21766) N2 - (SiR,CR)- and (SiS,CR)-t-butyl(l-hydroxyethyl)methylphenylsilane [(SiR,CR)-2 and (SiS,CR)-3] have been prepared by (R)-selective microbial rcduction of racemic acetyl(t-butyl)methylphenylsilane (rac-1) using resting free cells of the yeast Trigonopsis variabilis (DSM 70714) or the bacterium Corynebacterium dioxydans (ATCC 21766). The biotransfonnations were carried out on a 10 g scale. Afterseparation by column chromatography on silica gel, the optically active diastereomers (SiR,CR)-2 and (SiS,CR)-3 produccd by T. variabilis were obtained in good yields [74% ((SiR,CR)-2). 78% ((SiS,CR)-3)]. The products obtained from the reduction with C. dioxydans were isolated in significantly lower yields [20% ((SiR,CR)-2), 20% ((SiS,CR)-3)]; reaction conditions not optimized). Both bioconversions gave products with high enantiomeric purities (T. variabilis: 91% ee ((SiR,CR)-2), 96% ee ((SiS,CR)-3); C. dioxydons: ~ 991 ee ((SiR,CR)-l), ~ 99% ee ((SiS,CR)-3)). To throw light on the stereochemical aspects of these biotransfonnations, an X-ray diffraction study was carried out on the 3,5-dinitrobenzoate of rac-(SiR,CS/SiS,CR)-3. In addition, 1H NMR spectroscopic stereochemical correlation studies were performed with the (S)-MTPA esters derived from (SiR,CR)-l, (SiS,CR)-3, rac-(SiR,CRjSiS,CS)-2 and rac-(SiR,CSjSiS,CR)-3 [rac-(SiR,CR/ SiS,CS)-2 and rac-(SiR,CS/SiS,CR)-3 were obtained by reduction of rac-1 with LiAIH\(_4\) in diethylether, followed by chromatographic separation of the diastereomers on silica gel]. These stereochemical studies allowed assignment of the absolute configurations and enantiomeric purities of the biotransformation products. KW - Anorganische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64109 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Bentlage, Anke A1 - Towart, Robertson A1 - Möller, Eike T1 - Sila-pharmaca, XXV. Sila-analogues of nifedipine-like dialkyl 2,6-dimethyl-4-aryl-1,4 dihydropyridine-3,5-dicarboxylates, III N2 - IS neue C/Si-Analogenpaare (C-Verbindungen und sila- bzw. disila-substituierte Derivate), die sich strukturell vom Nifedipin ableiten, wurden synthetisiert. Diese und einige weitere C/Si-Paare wurden hinsichtlich ihrer physikochemischen und pharmakologischen Eigenschaften vergleichend untersucht. Mittels reversed-phase-Dünnschichtchromatographie wurde gezeigt, daß die Sila- bzw. Disila-Analoga lipophiler sind als die entsprechenden C-Verbindungen. Bezüglich der spasmolytischen in vitra-Aktivitäten zeigen die Si-Verbindungen in erster Näherung ähnliche Struktur-Wirkungs-Beziehungen wie ihre Carba-Analoga. Dagegen konnten hinsichtlich der ill vlva-Effekte (cardiovasculäre und antihypertensive Aktivität) in einigen Fällen große Unterschiede nachgewiesen werden. N2 - 15 new C/Si-analogue pairs (C-compounds and sila- or disila-substituted derivatives, respectively), which are structurally related to nifedipine, have been synthesized. These and some further C/Si-pairs have been investigated comparatively with respect to their physicochemical and pharmacological properties. Using reversed-phase thin-layer chromatography it was shown that both the sila- and disila-analogues are more Iipophilic than the corresponding C-compounds. With respect to the in vitra spasmolytic potencies the Si-compounds show approximately similar structure-activity relationships to their carba-analogues. However, in some cases marked differences in in vivo effects (cardiovascular and antihypertensive activity) could be demonstrated. KW - Anorganische Chemie Y1 - 1983 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-78357 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Becker, B. A1 - Berg, D. A1 - Brandes, W. A1 - Dutzmann, S. A1 - Schaller, S. T1 - Bis(4-fluorophenyl)methyl(1H-1,2,4-triazol-1-yl-methyl)germane, a germanium analogue of the agricultural fungicide flusilazole: synthesis and biological properties N2 - Bis( 4-fluorophenyl)methyl(l H-1,2,4-triazol-1-yl-methyl)germane (2), a germanium analogue of the agricultural fungicide flusilazole (1), has been synthesized from Cl\(_3\)GeCH\(_2\)CI (3) by both a three-step and a four-step synthesis (3-> (p-F-C\(_6\)H\(_4\))\(_2\)Ge(CH\(_2\)Cl)Br (4)-> (p-F-C\(_6\)H\(_4\))\(_2\)Ge(CH\(_2\)CI)CH\(_3\) (S)-> 2; S ~ (p-F-C\(_6\)H\(_4\))\(_2\)Ge(CH\(_2\)I)CH\(_3\) (6)-> l). The fungicidal properties of l have been compared with those of the parent silicon compound 1 (studies on Si/Ge bioisosterism). In various test systems, the SijGe analogues 1 and 2 showed comparable fungicidal properlies (in activity against plant pathogenic fungi: in agar plate diffusion tests and greenhause evaluations; in activity against human pathogenic fungi: in serial dilution tests). In addition, 1 and 2 displayed comparable potencies in respect of sterol biosynthesis inhibition in Sacclulromycopsis üpolytica and Pyricularia oryzae, the mode of action being primarily an inhtbition of oxidative C14-demethylation. KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64224 ER - TY - JOUR A1 - Tacke, Reinhold A1 - Becht, J. A1 - Lopez-Mras, A. A1 - Sheldrick, W. S. A1 - Sebald, A. T1 - Syntheses, X-ray crystal structure analyses, and solid-state NMR studies of some zwitterionic organofluorosilicates N2 - No abstract available KW - Anorganische Chemie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64272 ER - TY - JOUR A1 - Syldatk, C. A1 - Stoffregen, A. A1 - Wuttke, F. A1 - Tacke, Reinhold T1 - Enantioselective reduction of acetyldimethylphenylsilane: a screening with thirty strains of microorganisms N2 - Thirty strains of microorganisms (bacteria, yeasts, fungi and green algae) were tested as resting free cells for their ability to transform acetyldimethylphenylsilane (1) enantioselectively into (R)-(1-hydroxyethyl) dimethylphenylsilane [(R)-2]. The biotransformations were monitared by GC (packed OV-17 column), and the enantiomeric purities of the products isolated were determined by HPLC (cellulose triacetate column, UV detection). All microorganisms tested were found to reduce 1 enantioselectively to give (R)-2. Under the test conditions used, the yeast Trigonapsis variabilis (DSM 70714) was found to 1 exhibif the highest specific activity (1.5 mg product x g cell wet mass\(^{-1}\) x min\(^{-1}\) ), whereas the highest enantioselectivities were observed for the bacteria Acinetobacter ca lcoaceticus (ATCC 31012) (>95% ee), Brevfbacterium species (ATCC 21860) (90% ee) and Corynebacterium dioxydans (ATCC 21766) (>95% ee), the yeast Candida humico la (OSM 70067) (90% ee), the fungus Cunninghame lla e legans (ATCC 26269) (94% ee), as well as the cyanobacterium Synechococcus leopoliensis (94% ee).· From the green algae tested, Chlamydomonas reinhardii showed the highest.enantioselectivity (85% ee). KW - Anorganische Chemie Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63906 ER - TY - JOUR A1 - Syldatk, C. A1 - Andree, H. A1 - Stoffregen, A. A1 - Wagner, F. A1 - Stumpf, B. A1 - Ernst, L. A1 - Zilch, H. A1 - Tacke, Reinhold T1 - Enantioselective reduction of acetyldimethylphenylsilane by Trigonopsis variabilis (DSM 70714) N2 - Growing and resting cells of the yeast Trigonapsis variabilis (DSM 70714) can be used for the enantioselective reduction of the organosilicon compound acetyldimethylphenylsilane (J) to give optically active (R)-(1-hydroxyethyl)dimethylphenylsilane [(R)-2] in good yields. The enantiomeric purity of the isolated product was determined tobe 62-86% ee depending on the substrate concentration used. Both substrate and product caused an inhibition of the reaction at concentrations higher than 0.35 and 0.5 g/1, respectively. Besides, higher substrate and product concentrations led to increased formation of the by-product 1,1,3,3-tetramethyl-1,3-diphenyldisiloxane. Considering the limiting substrate and product concentrations, it was possible to use the same biomass at least 5 times without significant loss of enzyme activity. 3-Methyl-3-phenyl-2-butanone (5) and acetyldimethylphenylgermane (7), which represent carbon and germanium analogues of 1, were also found to be accepted as substrates by Trigonapsis variabilis (DSM 70714). The reduction rates of the silicon {1) and germanium compound {7) were much higher than the transformation rate of the corresponding carbon analogue 5. KW - Anorganische Chemie Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63836 ER - TY - JOUR A1 - Su, Wei A1 - Rajeshkumar, Thayalan A1 - Xiang, Libo A1 - Maron, Laurent A1 - Ye, Qing T1 - Facile Synthesis of Uranium Complexes with a Pendant Borane Lewis Acid and 1,2‐Insertion of CO into a U−N Bond JF - Angewandte Chemie International Edition N2 - In this contribution, we illustrate uranium complexes bearing a pendant borate (i.e. 1 and 2) or a pendant borane (i.e. 3 and 4) moiety via reaction of the highly strained uranacycle I with various 3‐coordinate boranes. Complexes 3 and 4 represent the first examples of uranium complexes with a pendant borane Lewis acid. Moreover, complex 3 was capable of activation of CO, delivering a new CO activation mode, and an abnormal CO 1,2‐insertion pathway into a U−N bond. The importance of the pendant borane moiety was confirmed by the controlled experiments. KW - Boranes KW - Boron KW - Carbon Monoxide KW - Lewis acids KW - Uranium Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312197 VL - 61 IS - 51 ER - TY - JOUR A1 - Strohmann, C. A1 - Bauerecker, S. A1 - Cammenga, H. K. A1 - Jones, P. G. A1 - Mutschler, E. A1 - Lambrecht, G. A1 - Tacke, Reinhold T1 - Enantiomers of the muscarinic antagonist 1-cyclohexyl-1-(4-fluorophenyl)-4-piperidino-1-butanol (p-fluoro-hexahydro-difenidol): synthesis, absolute configuration, and enantiomeric purity N2 - The enantiomers of the antimuscarinic agent 1-cyclohexyl-1- (4-fluorophenyl)-4-piperidino-1-butanol [(R)- and (S)-p-fluorohexahydro- difenidol] ((R)- and (S)-2a] and their methiodides (R)- 3 and (S)-3 were prepared with high enantiomeric purity. (R)- 2a and (S)-2a (isolated as hydrochlorides) were obtained by catalytic hydrogenation (Pd/C contact) of the corresponding enantiomers of 1-cyclohexyl-1-( 4-fl uorophen yl)-4-piperidino- 2-butyn-1-ol [(R)- and (S)-4]. Reaction of (R)-2a and (S)-2a with rnethyl iodide led to (R)-3 and (S)-3, respectively. The unsaturated precursors (R)- and (S}-4 (enantiorneric purity ~ 99.80 and ~99.94% e.e.; calorimetric analysis) were prepared by res-sepaolution of rac-4 [available from 4-FC\(_6\)H\(_4\)C(O)C\(_6\)H\(_{11}\) by reaction with LiC ~ CCH\(_2\)NC\(_5\)H\(_{10}\)] using (R)- and (S)-mandelic acid as resolving agents. The absolute configurations of the (R) and (S) enantiomers of 2a, 3, and 4 were determined by an X-ray crystal-structure analysis of (S)-5, the methiodide of (S)-4. (R)- 2a and (R)-3 exhibit a higher affinity for muscarinic M1, M2, M3, and M4 receptors (by up to two orders of magnitude) than their corresponding antipodes (S)-2a and (S)-3, the degree of stereoselectivity depending on the receptor subtype involved. (R)-2a represents a useful tool for rnuscarinic receptor research (affinity profile: M1 ~ M3 ~ M4 > M2). KW - Anorganische Chemie KW - Difenidol KW - p-fluoro-hexahydro- KW - enantiomers of / Muscarinic receptors KW - subtypes of Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64144 ER - TY - INPR A1 - Stoy, Andreas A1 - Böhnke, Julian A1 - Jiménez-Halla, J. Oscar C. A1 - Dewhurst, Rian D. A1 - Thiess, Torsten A1 - Braunschweig, Holger T1 - CO\(_2\) Binding and Splitting by Boron–Boron Multiple Bonds T2 - Angewandte Chemie, International Edition N2 - CO\(_2\) is found to undergo room-temperature, ambient- pressure reactions with two species containing boron-boron multiple bonds, leading to incorporation of either one or two CO\(_2\) molecules. In one case, a thermally-unstable intermediate was structurally characterized, indicating the operation of an initial 2+2 cycloaddition mechanism in the reaction. KW - carbon dioxide KW - CO2 fixation KW - diborenes KW - diborynes KW - boron Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-164265 N1 - This is the pre-peer reviewed version of the following article: A. Stoy, J. Böhnke, J. O. C. Jiménez‐Halla, R. D. Dewhurst, T. Thiess, H. Braunschweig, Angew. Chem. Int.Ed. 2018, 57,5947 –5951, which has been published in final form at DOI: 10.1002/anie.201802117. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving. ER - TY - THES A1 - Stey, Thomas Josef T1 - Di(benzothiazol-2-yl)phosphane - Studies on a Janus Head Ligand - T1 - Di(benzothiazol-2-yl)phosphan - Arbeiten über einen janusköpfigen Liganden - N2 - The design of ligands is one of the most important and simultaneously challenging fields of research in modern inorganic chemistry. The aim is to synthesise ligands that can serve as coordination units for a broad variety of metal fragments and different purposes. The ligands have to be very flexible concerning their donating behaviour and geometrical prerequisites in order to correspond to the required metal fragments. N2 - Ziel der vorliegenden Arbeit war die Synthese eines Januskopfliganden der zweiten Generation und die Untersuchung seiner Reaktivität und seines Koordinationsverhalten. Als Zielverbindung wurde Di(benzothiazol-2-yl)phosphan (1) gewählt (Schema 7.1). Neben harten Koordinationsstellen enthalten die heteroaromatischen Substituenten dieses Liganden zusätzlich weiche, die das System im Vergleich zu z. B. Di(pyrid-2-yl)phosphan im Bezug auf mögliche koordinierte Metallfragmente flexibler machen sollten. KW - Phosphine KW - Benzothiazolderivate KW - Ligand KW - Chemische Synthese KW - Phosphanliganden KW - Ligandendesign KW - Januskopfligand KW - Koordinationschemie KW - Phosphaneligands KW - Liganddesign KW - Janus Head Ligand KW - koordination chemistry Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-12330 ER - TY - INPR A1 - Stennett, Tom A1 - Mattock, James A1 - Vollert, Ivonne A1 - Vargas, Alfredo A1 - Braunschweig, Holger T1 - Unsymmetrical, Cyclic Diborenes and Thermal Rearrangement to a Borylborylene T2 - Angewandte Chemie, International Edition N2 - Cyclic diboranes(4) based on a chelating monoanionic, benzylphosphine linker were prepared by boron-silicon exchange between arylsilanes and B\(_2\)Br\(_4\). Coordination of Lewis bases to the remaining sp\(^2\) boron atom yielded unsymmetrical sp\(^3\)-sp\(^3\) diboranes, which were reduced with KC\(_8\) to their corresponding trans-diborenes. These compounds were studied by a combination of spectroscopic methods, X-ray diffraction and DFT calculations. PMe\(_3\)-stabilized diborene 6 was found to undergo thermal rearrangement to gem- diborene 8. DFT calculations on 8 reveal a polar boron-boron bond, and indicate that the compound is best described as a borylborylene. KW - boron KW - borylene KW - multiple bonds KW - rearrangement KW - DFT calculations Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-160258 N1 - This is the pre-peer reviewed version of the following article: T. E. Stennett, J. D. Mattock, I. Vollert, A. Vargas, H. Braunschweig, Angew. Chem. Int. Ed. 2018, 57, 4098., which has been published in final form at DOI: 10.1002/anie.201800671. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving. VL - 57 ER - TY - INPR A1 - Stennett, Tom A1 - Mattock, James A1 - Pentecost, Leanne A1 - Vargas, Alfredo A1 - Braunschweig, Holger T1 - Chelated Diborenes and their Inverse-Electron-Demand Diels- Alder Reactions with Dienes T2 - Angewandte Chemie, International Edition N2 - A doubly base-stabilized diborane based on a benzylphosphine linker was prepared by a salt elimination reaction between 2-LiC\(_6\)H\(_4\)CH\(_2\)PCy\(_2\).Et\(_2\)O and B\(_2\)Br\(_4\). This compound was reduced with KC8 to its corresponding diborene, with the benzylphosphine forming a five-membered chelate. The diborene reacts with butadiene, 2-trimethylsiloxy-1,3-butadiene and isoprene to form 4,5-diboracyclohexenes, which interconvert between their 1,1- (geminal) and 1,2- (vicinal) chelated isomers. The 1,1-chelated diborene undergoes a halide-catalysed isomerisation into its thermodynamically favoured 1,2-isomer, which undergoes Diels-Alder reactions more slowly than the kinetic product. KW - boron KW - cycloaddition KW - DFT calculations KW - chelates KW - low-valent compounds Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-178268 N1 - This is the pre-peer reviewed version of the following article: T. E. Stennett, J. D. Mattock, L. Pentecost, A. Vargas, H. Braunschweig, Angew. Chem. Int. Ed. 2018, 57, 15276., which has been published in final form at https://doi.org/10.1002/anie.201809217. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. ER - TY - JOUR A1 - Stennett, Tom E. A1 - Jayaraman, Arumugam A1 - Brückner, Tobias A1 - Schneider, Lea A1 - Braunschweig, Holger T1 - Hydrophosphination of boron–boron multiple bonds JF - Chemical Science N2 - Five compounds containing boron–boron multiple bonds are shown to undergo hydrophosphination reactions with diphenylphosphine in the absence of a catalyst. With diborenes, the products obtained are highly dependent on the substitution pattern at the boron atoms, with both 1,1- and 1,2- hydrophosphinations observed. With a symmetrical diboryne, 1,2-hydrophosphination yields a hydro(phosphino)diborene. The different mechanistic pathways for the hydrophosphination of diborenes are rationalised with the aid of density functional theory calculations. KW - boron KW - diborenes KW - diborynes Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-240681 VL - 11 ER - TY - INPR A1 - Stennett, Tom E. A1 - Bissinger, Philipp A1 - Griesbeck, Stefanie A1 - Ullrich, Stefan A1 - Krummenacher, Ivo A1 - Auth, Michael A1 - Sperlich, Andreas A1 - Stolte, Matthias A1 - Radacki, Krzysztof A1 - Yao, Chang-Jiang A1 - Würthner, Frank A1 - Steffen, Andreas A1 - Marder, Todd B. A1 - Braunschweig, Holger T1 - Near-Infrared Quadrupolar Chromophores Combining Three-Coordinate Boron-Based Superdonor and Superacceptor Units T2 - Angewandte Chemie, International Edition N2 - In this work, two new quadrupolar A-π-D-π-A chromophores have been prepared featuring a strongly electron- donating diborene core and strongly electron-accepting dimesitylboryl F(BMes2) and bis(2,4,6-tris(trifluoromethyl)phenyl)boryl (BMes2) end groups. Analysis of the compounds by NMR spectroscopy, X-ray crystallography, cyclic voltammetry and UV-vis-NIR absorption and emission spectroscopy indicated that the compounds possess extended conjugated π-systems spanning their B4C8 cores. The combination of exceptionally potent π-donor (diborene) and π- acceptor (diarylboryl) groups, both based on trigonal boron, leads to very small HOMO-LUMO gaps, resulting in strong absorption in the near-IR region with maxima in THF at 840 and 1092 nm, respectively, and very high extinction coefficients of ca. 120,000 M-1cm-1. Both molecules also display weak near-IR fluorescence with small Stokes shifts. KW - boron KW - near-IR chromophores KW - conjugation KW - low-valent compounds KW - synthesis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-180391 N1 - This is the pre-peer reviewed version of the following article: T. E. Stennett, P. Bissinger, S. Griesbeck, S. Ullrich, I. Krummenacher, M. Auth, A. Sperlich, M. Stolte, K. Radacki, C.-J. Yao, F. Wuerthner, A. Steffen, T. B. Marder, H. Braunschweig, Angew. Chem. Int. Ed. 2019, 58, 6449. , which has been published in final form at https://doi.org/10.1002/anie.201900889. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. ER - TY - INPR A1 - Stennett, Tom A1 - Bertermann, Rüdiger A1 - Braunschweig, Holger T1 - Construction of Linear and Branched Tetraboranes via 1,1- and 1,2-Diboration of Diborenes T2 - Angewandte Chemie, International Edition N2 - Sterically unencumbered diborenes based on a benzylphosphine chelate undergo diboration reactions with bis(catecholato)diboron in the absence of a catalyst to yield tetraboranes. The symmetrical diborenes studied undergo 1,2- diborations, whereas an unsymmetrical derivative was found to yield a triborylborane-phosphine adduct as the result of a formal 1,1-diboration. A related borylborylene compound also underwent a 1,2-diboration to produce a borylene-borane adduct. KW - boron KW - diboration KW - chain structures KW - low-valent compounds KW - isomers Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-178276 N1 - This is the pre-peer reviewed version of the following article: T. E. Stennett, R. Bertermann, H. Braunschweig, Angew. Chem. Int. Ed. 2018, 57, 15896., which has been published in final form at https://doi.org/10.1002/anie.201809976. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. ER - TY - THES A1 - Sowik, Thomas T1 - Assessment of the surface functionalization of SPION and DND nanomaterials for cellular uptake and fluorescence imaging T1 - Abschätzung der Oberflächenfunktionalisierung von SPION und DND Nanomaterialien für die Zellaufnahme und Fluoreszenzimaging N2 - The aim of this work was to synthesize and functionalize different bio-relevant nanomaterials like silica-coated superparamagnetic iron oxide nanoparticles (SPIONs) as contrast agents for T2 magnetic resonance imaging (MRI) and detonation nanodiamond (DND) with the neurohormone peptide allatostatin 1 (ALST1) and a fluorescent dye. Analytical techniques for the determination and quantification of surface functional groups like amines, azides, and peptides were also developed and established. Thus, in the first part of the work, a TGF-1 binding peptide and allatostatin 1 (ALST1), both supposed to act as active tumour targeting vectors, were synthesized by solid-phase peptide synthesis (SPPS) and characterized by high pressure liquid chromatography (HPLC) and mass spectrometry. Then, azide-functionalized silica nanoparticles were synthesized by the Stöber process and characterized by transmission electron microscopy (TEM) and infrared spectroscopy (IR). The surface loading of amine and azide groups was determined by a new protocol. The azide groups were reduced with sodium boronhydride to amine and then functionalized with Fmoc-Rink Amide linker according to a standard SPPS protocol. Upon cleavage of Fmoc by piperidine, the resulting dibenzofulvene and its piperidine adduct were quantified by UV/Vis spectroscopy and used to determine the amount of amine groups on the nanoparticle surface. Then, ALST1 and related tyrosine- and phenylalanine substituted model peptides were conjugated to the azide-functionalized silica nanoparticles by copper(I)-catalyzed azide-alkyne dipolar cycloaddition (CuAAC). The successful peptide conjugation was demonstrated by the Pauly reaction, which however is only sensitive to histidine- and tyrosine-containing peptides. As a more general alternative, the acid hydrolysis of the peptides to their individual amino acid building blocks followed by derivatization with phenyl isothiocyanate (PITC) allowed the separation, determination, and quantification of the constituent amino acids by HPLC. In the second part of the work, amine- and azide-functionalized silica-coated superparamagnetic iron oxide nanoparticles (SPIONs) were synthesized by co-precipitation and subsequent silica-coated based on the Stöber process and characterized by TEM and IR. The amine surface loading was determined by the method already established for the pure silica systems. The azide surface loading could also be quantified by reduction with sodium boronhydride to amine groups and then conjugation to Fmoc-Rink amide linker. Upon cleavage of Fmoc with piperidine, the total amine surface loading was obtained. The amount of azide surface groups was then determined from the difference of the total amine surface loading and the amine surface loading. Thus, it was possible to quantify both amine and azide surface groups on a single nanoparticle system. Superparamagnetic iron oxide nanoparticles (SPIONs) are potent T2 contrast agents for magnetic resonance imaging (MRI). Due to their natural metabolism after injection into the blood stream, SPIONs mostly end up inside macrophages, liver, spleen or kidneys. To generate a potential target-specific SPION-based T2 contrast agent for MRI, the neurohormone peptide ALST1 was conjugated by CuAAC to the azide- and amine functionalized superparamagnetic iron oxide nanoparticles, since ALST1 is supposed to target difficult-to-treat neuroendocrinic tumours due to its analogy to galanin and somastatin receptor ligands. The organic fluorescent dye cyanine 5 (Cy5) was also conjugated to the silica-coated superparamagnetic iron oxide nanoparticles (SPIONs) via a NHS-ester to the amines to enable cell uptake studies by fluorescence microscopy. These constructs were characterized by TEM, dynamic light scattering (DLS), and IR. The amino acids of the conjugated ALST1 were determined by the HPLC method as described before for peptide-modified silica nanoparticle surfaces. Then, the relaxivity r2 was measured at 7 T. However, a r2 value of 27 L/mmolFe·s for the dual ALST1-/Cy5-functionalized silica-coated SPIONs was not comparable to T2 contrast agents in clinical use, since their relaxivity is commonly determined at 1.5 T, and no such instrument was available. However, it can be assumed that the synthesized dual ALST1-/Cy5-functionalized silica-coated SPION would show a lower r2 at 1.5 T than at 7T. Commercial T2 MRI contrast agents like VSOP-C184 from Ferropharm show at r2 values of about 30 L/mmolFe·s at 1.5 T. Still, the relaxivity of the new material has some potential for application as a T2 contrast agent. Then, the material was used in cell uptake studies by fluorescence microscopy with the conjugated Cy5 dye as a probe. The dual ALST1-/Cy5-functionalized silica-coated SPION showed a high degree of agglomeration with no cellular uptake unlike described for ALST1-functionalized nanoparticles in literature. It is assumed that upon agglomeration of the particles, constructs form which are unable to be internalized by the cellular endocytotic pathways anymore. As a future perspective, the tendency of the particle to agglomerate should be reduced by changing the coating material to polyethylene glycol (PEG) or chitosan, which are known to be bio-compatible, bio-degradable and prevent agglomeration. In the third part of the work, the rhenium compound [ReBr(CO)3(L)] with L = 2-phenyl-1H-imidazo[4,5-f][1,10]phenanthroline and its manganese analogue were synthesized by heating the ligand and rhenium pentacarbonyl bromide or and manganese pentacarbonyl bromide respectively, in toluene. However, [MnBr(CO)3(L)] was unstable upon illumination by UV light at 365 nm. Thus, it was dismissed for further application. The photophysical properties of [ReBr(CO)3(L)] were explored, by determination of the excited-state life time by the time-correlated single-photon counting (TCSPC) method and the quantum yield by a fluorescence spectrometer equipped with an integration sphere. A value of  = 455 ns, a Stokes shift of 197 nm and a rather low quantum yield =were found. Metal complexes are supposed to have superior properties compared to organic dyes due to their large Stokes shifts, long excited-state life times, and high quantum yields. Thus, amine- and azide-functionalized detonation nanodiamond (DND) as an alternative biological inert carrier system was functionalized with ALST1 to enhance its cell uptake properties. A luminescent probe for cell uptake studies using fluorescence microscopy was also attached, either based on the new rhenium complex or the commercially available organic dye Cy5, respectively. The aldehyde-functionalized rhenium complex was conjugated to the DND via oxime ligation, which is known to be a mild and catalyst-free conjugation method. The amount of peptide ALST1 on the DND was analyzed and quantified after acid hydrolysis and PITC derivatization by HPLC as described before. Then, the ALST1-/luminescent probe-functionalized DND was investigated for its photophysical properties by fluorescence spectroscopy. The Cy5-functionalized material showed a slightly lower fluorescence performance in aqueous solution than reported in literature and commercial suppliers with a life time  < 0.4 ns and quantum yields not determinable by integration sphere due to the week signal intensity. The rhenium complex-functionalized material had a very low signal intensity in only aqueous medium, and thus determination of life times and quantum yield by fluorescence spectroscopy was not possible. After incubation with MDA-MB 231 cells, the Cy5-functionalized DND could easily be detected due to its red fluorescence. However, it was not possible to visualize the rhenium complex-functionalized DND with fluorescence microscopy due to the low fluorescence intensity of the complex in aqueous medium and the lack of proper filters for the fluorescence microscope. Cy5-functionalized DND did not show any cellular uptake in fluorescence microscopy after conjugation with ALST1. Since the nanodiamond surface is known to strongly adsorb peptides and proteins, it is assumed that the peptide chain is oriented perpendicular to the nanoparticle surface and thus not able to interact with cell membrane receptors to promote cell uptake of the particles. As a future perspective, the ALST1-promoted cellular uptake of the DND should be improved by using different linker systems for peptide conjugation to prevent adsorption of the peptide chain on the particle surface. The new analytical methods for amino-, azide-, and peptide-functionalized nanoparticles have great potential to assist in the quantification of nanoparticle surface modifications by UV/Vis spectroscopy and HPLC. The determination of surface amine and azide groups based on the cleavage of conjugated Fmoc-Rink amide linker and detected by UV/Vis spectroscopy is applicable to all amine-/azide-functionalized nanomaterials. However, particles which form very stable suspension with the cleavage mixture can cause quantification problems due to scattering, making an accurate quantification of dibenzofulvene and its piperidine adduct impossible. The detection of tyrosine- and histidine-containing peptides based on the Pauly reaction is well-suited as a fast and easy-to-perform qualitative demonstration of successful peptide surface conjugation. However, its major drawback as a colourimetric approach is that coloured particles cannot be evaluated by this method. The amino acid analysis based on HPLC after acid hydrolysis of peptides conjugated to nanoparticle surfaces to its individual building blocks and subsequent derivatization with PITC, can be used on all nanomaterials with peptide or protein surface modification. It allows detection of amino acids down to picomolar concentrations and even enables analysis of very small peptide surface loadings. However, the resulting HPLC traces are difficult to analyze. Three new analytical methods based on UV/Vis and HPLC techniques have been developed and established. They assisted in the characterization of the synthesized DND and SPIONs with dual functionalization by ALST1 and Cy5 or [ReBr(CO)3(L)], respectively. However, the nanomaterials showed no cellular uptake due to a high tendency to agglomerate. The cellular uptake should be improved and the tendency to agglomerate of the SPIONs should be reduced by changing the surface coating from silica to either PEG or chitosan. Furthermore, different linker systems for connecting peptides to DND surfaces should be synthesized and evaluated to reduce potential peptide chain adsorption. N2 - Das Ziel dieser Arbeit war die Synthese und Funktionalisierung biologisch relevanter Nanomaterialien wie die Silica-umhüllten superparamagnetischen Eisenoxid Nanopartikel (SPIONs) als Kontrastmittel für T2 gewichtete Magnetresonanztomographie (MRT) und Detonantionsnanodiamant mit dem Neurohormonpeptid Allatostatin 1 (ALST1) sowie einem Fluoreszenzfarbstoff. Des Weiteren sollten analytische Methoden zur Bestimmung und Quantifizierung von funktionellen Oberflächenmodifikationen wie Amine, Azide und Peptide entwickelt und etabliert werden. Aus diesem Grund wurden im ersten Teil der Arbeit ein TGF-1 bindendes Peptid und Allatostatin 1 (ALST1), welche beide spezifisch Tumorgewebe anzielen, mit Hilfe der Festphasen Peptid Synthese (SPPS) hergestellt und durch HPLC und Massenspektrometrie charakterisiert. Danach wurden Azid-funktionalisierte Silica-Partikel durch den Stöber Prozess hergestellt und mit Hilfe von Transmissionselektronenmikroskopie (TEM) und Infrarot Spektroskopie (IR) charakterisiert. Die Oberflächenbeladung von Aminen und Aziden wurde mit einer neuen Methode bestimmt. Azidgruppen wurden mit Natriumborhydrid zu Aminen reduziert und anschließend mit dem Fmoc-Rink Amid Linker unter Verwendung des allgemeinen SPPS Verfahrens. Durch die Abspaltung von Fmoc mit Piperidin wurden Dibenzofulven und sein Piperidin-Adduct gebildet und mit Hilfe von UV/Vis Spektroskopie quantifiziert um die Oberflächenbeladung der Amino-Gruppen auf den Nanopartikeln zu bestimmen. Danach wurden ALST1 und verwandte Tyrosin- und Phenylalanin- substituierte Modellpeptide synthetisiert und durch die Kuper(I)-katalysierte Azid-Alkin dipolare Cycloaddition (CuAAC) an die Oberfläche der Silica-Partikel konjugiert. Die erfolgreiche Peptidkonjugation wurde mit Hilfe der Pauly Reaktion, welche jedoch ausschließlich auf Tyrosin- und Histidin-haltige Peptide und Proteine anwendbar ist, nachgewiesen. Als eine universellere Alternative wurden die Peptid-konjugierten Nanomaterialien mit konzentrierter Salzsäure hydrolysiert und anschließend mit Phenylisothiocyanat (PITC) derivatisiert, was die Trennung, Bestimmung und Quantifikation der individuellen Aminosäuren des Peptids durch HPLC ermöglichte. In dem zweiten Teil dieser Arbeit wurden Amin- und Azid-funktionalisierte Silica-umhüllte superparamagnetische Eisenoxidnanopartikel (SPIONs) durch Co-Präzipitation und anschließender Silica-Ummantelung basierend auf dem Stöber Prozess synthetisiert und mit Hilfe von TEM und IR charakterisiert. Die Oberflächenbeladung der Aminogruppen wurde an Hand der bereits etablierten Methode für Silica-Partikel bestimmt. Die Oberflächenbeladung der Azidgruppen wurde quantifiziert durch deren Reduktion mit Natriumborhydrid zu Aminogruppen und der darauf folgenden Verknüpfung mit dem Fmoc-Rink Amid Linker. Durch die Abspaltung des Fmoc mit Piperidin und dessen Quantifizierung durch UV/Vis Spektroskopie wurde so die gesamte Aminogruppen Oberflächenbeladung erhalten. Die Oberflächenbeladung mit Azidgruppen wurde dann durch die Differenz aus gesamter Amin- und tatsächlicher Amin-Oberflächenbeladung berechnet. Auf diese Weise war es möglich die Oberflächenbeladung sowohl von Aminen, als auch von Aziden an nur einem einzigen Nanopartikelsystem zu bestimmen. SPIONs können als Kontrastmittel für T2-gewichtete MRT Messungen verwendet werden. Jedoch werden sie auf Grund ihres Metabolismus nach der Injektion ins Blutsystem von Makrophagen, Leber, Milz und Niere aufgenommen. Um ein potentielles, gewebespezifisches SPION-basiertes Kontrastmittel für T2-gewichtete MRT Messungen zu erzeugen wurde das Neurohormonpeptid ALST1 mit Hilfe der CuAAC an die Azid-/Amin-funktionalisierten Silica-ummantelten SPIONs konjugiert, da von ALST1 eine Spezifität auf schwierig zu behandelnde neuroendokrine Tumore vermutet wird, auf Grund seiner Ähnlichkeit zu Galanin und Somastatin Rezeptorliganden. Der organische Fluoreszenzfarbstoff Cyanin 5 (Cy5) wurde ebenfalls an den Azid-/Amin-funktionalisierten Silica-ummantelten SPIONs über einen NHS-Ester konjugiert um Zellaufnahmestudien mit Hilfe von Fluoreszenzmikroskopie zu ermöglichen. Diese Materialien wurden mit TEM, dynamischer Lichtstreuung (DLS) und IR charakterisiert. Die Aminosäuren des konjugierten ALST1 wurden an Hand der bereits für Silica-Partikel beschriebenen HPLC-Methode bestimmt. Danach wurde die Relaxivität r2 bei 7 T gemessen. Leider sind der gemessene Wert von 27 L/mmolFe·s für das duale System ALST1-/Cy5-functionaliserte Silica-ummantelte SPIONs nicht mit klinisch verwendete T2 Kontrastmittel zu vergleichen, da diese bei einer Feldstärke von 1.5 T verwendet werden. Es ist jedoch anzunehmen, dass das synthetisierte Nanopartikelsystem bei 1.5 T eine geringere Relaxivität r2 zeigen würde als bei 7 T. Jedoch zeigen kommerzielle Kontrastmittel für T2-gewichtete MRT Messungen wie zum Beispiel VSOP-C184 von Ferropharm r2 Werte um die 30 L/mmolFe·s. Von daher hat das neue Material durchaus Potential als Kontrastmittel für T2-gewichtete MRT Messungen. Danach wurde das Material auf seine Zellaufnahme mit Hilfe von Fluoreszenzmikroskopie unter Verwendung des konjugierten Cy5 als Sonde untersucht. Die dualen ALST1-/Cy5-functionaliserte Silica-ummantelte SPIONs wurden mit MDA-MB 231 Zellen inkubiert, zeigten jedoch einen hohen Grad an Agglomeration, wobei große Konstrukte gebildet wurden die nicht mehr durch die zellularen Endozytosewege internalisiert werden konnten. Für weitere Anwendungen muss die Tendenz der Partikel zur Agglomeration verringert werden. Dies kann durch einen Wechsel der Hülle von Silica zu Polyethylenglykol (PEG) oder Chitosan erreicht werden, welche dafür bekannt sind Agglomeration zu verhindern als auch biologisch kompatibel, abbaubar zu sein. Im dritten Teil der Arbeit wurde die Rheniumverbindung [ReBr(CO)3(L)] mit L = 2-Phenyl-1H-imidazo[4,5-f][1,10]phenanthrolin und ihr Mangan-Analogon synthetisiert durch Erhitzen des Liganden und Bromopentacarbonylrhenium, beziehungsweise Bromopentacarbonyl-mangan, in Toluol. Der Komplex [MnBr(CO)3(L)] wurde jedoch wegen seiner Instabilität bei Belichtung mit UV-Licht der Wellenlänge 365 nm für weitere Anwendungen verworfen. Die photophysikalischen Eigenschaften von [ReBr(CO)3(L)] wurden untersucht durch die Bestimmung der Lebenszeit des angeregten Zustandes mit der time-correlated single-photon counting (TCSPC) Methode und die Quantenausbeute mit Hilfe eines Fluoreszenzspektrometers welches mit einer Integrationsphäre ausgerüstet war. Ein Wert von  = 455 ns, einem Stokes shift von 197 nm und eine eher niedrige Quantenausbeute  = 0.05 wurden ermittelt. Es wird behauptet, dass Metallkomplexe den organischen Fluoreszenzfarbstoffen überlegende Stokes shifts, Lebenszeiten des angeregten Zustandes sowie Quantenausbeuten haben. Aus diesem Grund wurde der Amino- und Azid-funktionalisierte DND mit ALST1, auf Grund seiner Eigenschaft die Zellaufnahme zu verstärken, funktionalisiert. Des Weiteren wurde eine Fluoreszenzsonde für Zellaufnahmestudien unter Verwendung von Fluoreszenzmikroskopie und die Partikeloberfläche konjugiert, welche entweder auf [ReBr(CO)3(L)] oder Cy5 basierten. Die Aldehyd-funktionalisierte Rheniumverbindung wurde über die Oxime Ligation an den Nanopartikel konjugiert, welche als milde und Katalysator-freie Konjugationsmethode bekannt ist. Die Menge des Peptids ALST1 auf der DND Oberfläche wurde durch HPLC nach saurer Hydrolyse und Derivatisierung mit PITC wie zuvor beschrieben analysiert und quantifiziert. Danach wurden die dualen ALST1-/Lumineszenzsonde-funktionalisierten DND in Bezug auf ihre photophysikalischen Eigenschaften mit Hilfe der Fluoreszenzspektroskopie untersucht. Das Cy5-funktionaliserte Material zeigte in wässrigem Medium etwas geringere Lebenszeit des angeregten Zustandes mit  < 0.4 ns als in der Literatur beschrieben und eine nicht bestimmbare Quantenausbeute durch die Integrationssphäre auf Grund der schwachen Emissionsintensität. Das [ReBr(CO)3(L)]-funktionalisierte Material zeigte eine sehr geringe Emissionsintensität in wässrigen Medium, welche es unmöglich machte die Lebenszeit des angeregten Zustandes und die Quantenausbeute zu bestimmen. Es war nicht möglich das Rhenium Komplex-funktionalisierte Material auf Grund seiner geringen Emissionsintensität in der Fluoreszenzmikroskopie nach Inkubation mit MDA-MB 231 Zellen zu visualisieren. Nach der Inkubation des Cy5-functionalisierten DND mit MDA-MB 231 Zellen, konnte das Material sehr gut auf Grund seiner roten Fluoreszenz identifiziert werden. Jedoch zeigte es keine Internalisierung in die Zellen nach Konjugation mit ALST1. Es wird vermutet dass die Peptidkette flach auf die Nanodiamantoberfläche, welche für ihre starke, nicht-kovalente Interaktion mit Proteinen und Peptiden bekannt ist, adsorbiert ist. Für zukünftige Anwendungen muss die ALST1-vermittelte Zellaufnahme der Detonationsnanodiamanten verbessert werden. Dies kann erreicht werden durch die Verwendung anderer Linker-Systeme zur Verbrückung von Peptid und Partikeloberfläche um Adsorption zu verhindern. Die neuen analytischen Methoden für Amino-, Azid-, und Peptid-funktionalisierte Nanopartikel haben großes Potential in der Quantifizierung von Oberflächenmodifikationen von Nanopartikeln durch HPLC und UV/Vis. Die Bestimmung von Oberflächenbeladungen von Amin- und Azidgruppen basierend auf der Abspaltung von konjugiertem Fmoc des Fmoc-Rink Amid Linkers und Detektion durch UV/Vis Spektroskopie ist anwendbar auf alle Amin- und Azid-funktionalisierten Nanomaterialien. Jedoch kann es bei Partikeln welche besonders stabilen Suspensionen mit der Abspaltlösung bilden zu Problemen in der Quantifikation von Dibenzofulven und seinem Piperidin Addukt mittels UV/Vis Spektroskopie auf Grund von Streuung kommen. Die Detektion von Tyrosin- und Histidin-enthaltenden Peptiden auf Nanopartikeloberflächen auf Grundlage der Pauly Reaktion ist besonders geeignet als schneller und einfach durchzuführender qualitativer Nachweis für die erfolgreiche Konjugation von Peptiden auf Nanopartikeloberflächen. Der Hauptnachteil ist jedoch, dass Partikel mit Eigenfarbe nicht verwendet werden können. Die Aminosäureanalyse auf Grundlage von HPLC nach saurer Hydrolyse von Peptid-funktionalisierten Nanomaterialien und anschließender Derivatisierung mit PITC kann für alle Peptid- oder Protein-modifizierten Nanomaterialien verwendet werden. Es ermöglicht die Detektion von bis zu pikomolaren Konzentrationen und damit die Quantifizierung sehr geringe Oberflächenbeladungen mit Peptiden und Proteinen. Jedoch sind die resultierenden HPLC Chromatogramme schwierig zu interpretieren. Drei neue analytische Methoden auf der Grundlage von UV/Vis und HPLC Techniken wurden entwickelt und etabliert. Sie halfen bei der erfolgreichen Charakterisierung der synthetisierten DND und SPIONs mit dualer Funktionalisierung durch ALST1 und Cy5, beziehungsweise [ReBr(CO)3(L)]. Jedoch zeigten die Nanomaterialien auf Grund der hohen Tendenz zur Agglomeration keine Zellaufnahme. Das weitere Vorgehen umfasst die Verbesserung der Zellaufnahme durch ersetzen der Silica-Hülle der SPIONs mit PEG oder Chitosan. Bei den DND müssen andere Linkersysteme in Betracht gezogen und dann synthetisiert werden, welche die Adsorption der Peptidkette auf der Oberfläche des Partikels verhindern. KW - Nanopartikel KW - Bioanorganische Chemie KW - Peptide KW - SPION KW - Nanodiamond KW - Neuropeptide Hormone KW - Particle analytics KW - fluorescence KW - SPION KW - Nanodiamant KW - Neuropeptidhormon KW - Partikelanalytik KW - Fluoreszenz Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-103709 ER - TY - THES A1 - Sohns, Andreas T1 - Halfsandwich iron complexes with Silanol-functionalized Cyclopentadienyl ligands T1 - Halbsandwich-Eisenkomplexes mit Silanol-funktionalisierten Cyclopentadienyl-Liganden N2 - ... N2 - ... KW - Halbsandwich-Verbindungen KW - Eisenkomplexe KW - Cyclopentadienderivate KW - Silanole KW - Chemische Synthese KW - Ferrio-silanole KW - Ferrio-silanols Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-15809 ER - TY - THES A1 - Sieck, Carolin T1 - Synthesis and Photophysical Properties of Luminescent Rhodacyclopentadienes and Rhodium 2,2'-Biphenyl Complexes T1 - Synthese und photophysikalische Eigenschaften von lumineszierenden Rhodacyclopentadienen und Rhodium 2,2'-Biphenyl Komplexen N2 - The photochemistry and photophysics of transition metal complexes are of great interest, since such materials can be exploited for a wide range of applications such as in photocatalysis, sensing and imaging, multiphoton-absorption materials and the fabrication of OLEDs. A full understanding of the excited state behavior of transition metal compounds is therefore important for the design of new materials for the applications mentioned above. In principle, the luminescence properties of this class of compounds can be tuned by changing the metal or subtle changes in the ligand environment. Furthermore, transition-metal complexes continue to play a major role in modern synthetic chemistry. In particular, they can realize selective transformations that would either be difficult or impossible by conventional organic chemistry. For example, they enable the efficient and selective formation of carbon–carbon bonds. One famous example of these types of transformations are metal-catalyzed cyclization reactions. Herein, metallacyclopentadiene complexes are considered as key intermediates in a number of metal-mediated or -catalyzed cyclization reactions, i.e. the [2+2+2] cyclotrimerization of alkynes. Recent research has focused on the synthesis and characterization of these metallacyclic intermediates such as MC4 ring systems. Metallacyclopentadienes are structurally related to main group EC4 systems such as boroles, siloles, thiophenes and phospholes. Overall, this group of compounds (EC4 analogues) is well known and has attracted significant attention due to their electron-transport and optical properties. Unlike transition metal analogues, however, these EC4 systems show no phosphorescence, which is due to inefficient SOC compared to 2nd and 3rd row transition metals, which promoted us to explore the phosphorescence potential of metallacyclopentadienes. In 2001, Marder et al. developed a one-pot high-yield synthesis of luminescent 2,5 bis(arylethynyl)rhodacyclopentadienes by reductive coupling of 1,4-diarylbuta-1,3-diynes at a suitable rhodium(I) precursor. Over the past years, a variety of ligands (e.g. TMSA, S,S’ diethyldithiocarbamate, etc.) and 1,4-bis(p-R-phenyl)-1,3-butadiynes or linked , bis(p-R-arylethynyl)alkanes (R = electron withdrawing or donating groups) were investigated and always provided a selective formation of 2,5 bis(arylethynyl)rhodacyclopentadienes, which were reported to be fluorescent despite presence of the heavy atom. To examine the influence of the ligand sphere around the rhodium center on the intersystem-crossing (ISC) processes in the above-mentioned fluorescent rhodacyclopentadienes and to increase the metal character in the frontier orbitals by destabilizing the Rh filled d-orbitals, a -electron donating group was introduced, namely acetylacetonato (acac). Interestingly, in 2010 Tay reacted [Rh(κ2-O,O-acac)(PMe3)2] with ,-bis(p-R-arylbutadiynyl)alkanes and observed not only the fluorescent 2,5 bis(arylethynyl)rhodacyclopentadienes, but also rhodium 2,2’-bph complexes as products, which were reported to be phosphorescent in preliminary photophysical studies. In this work, the reaction behavior of [Rh(κ2-O,O-acac)(L)2] (L = PMe3, P(p-tolyl)3) with different ,-bis(p-R-arylbutadiynyl)alkanes was established. Furthermore, the separation of the two isomers 2,5-bis(arylethynyl)rhodacyclopentadienes (A) and rhodium 2,2’-bph complexes (B), and the photophysical properties of those were explored in order to clarify their fundamentally different excited state behaviors. Reactions of [Rh(κ2-O,O-acac)(P(p-tolyl3)2)] with ,-bis(arylbutadiynyl)alkanes gives exclusively weakly fluorescent 2,5-bis(arylethynyl)rhodacyclopentadienes. Changing the phosphine ligands to PMe3, reactions of [Rh(κ2-O,O-acac)(PMe3)2] and , bis(arylbutadiynyl)alkanes afford two isomeric types of MC4 metallacycles with very different photophysical properties, as mentioned before. As a result of a normal [2+2] reductive coupling at rhodium, 2,5 bis(arylethynyl)rhodacyclopentadienes (A) are formed, which display intense fluorescence. Rhodium 2,2’-bph complexes (B), which show phosphorescence, have been isolated as a second isomer originating from an unusual [4+2] cycloaddition reaction and a subsequent -H-shift. Control of the isomer distribution, of 2,5-bis(arylethynyl)rhodacyclopentadienes (A) and rhodium biphenyl complexes (B), is achieved by modification of the linked , bis(arylbutadiynyl)alkane. Changing the linker length from four CH2 to three CH2 groups, dramatically favors the formation of the rhodium biphenyl isomer B, providing a fundamentally new route to access photoactive metal biphenyl compounds in good yields. This is very exciting as the photophysical properties of only a limited number of bph complexes of Ir, Pd and Pt had been explored. The lack of photophysical reports in the literature is presumably due to the limited synthetic access to various substituted 2,2’-bph transition metal complexes. On the other hand, as the reaction of [Rh(κ2-O,O-acac)(P(p-tolyl)3)2] with , bis(arylbutadiynyl)alkanes provides a selective reaction to give weakly fluorescent 2,5 bis(arylethynyl)rhodacyclopentadiene complexes with P(p-tolyl)3 as phosphine ligands, a different synthetic access to 2,5-bis(arylethynyl)rhodacyclopentadiene complexes with PMe3 as phosphine ligands was developed, preventing the time-consuming separation of the isomers. The weak rhodium-phosphorus bonds of 2,5-bis(arylethynyl)rhodacyclopentadiene complexes bearing P(p tolyl)3 as phosphine ligands, relative to those of related PMe3 complexes, allowed for facile ligand exchange reactions. In the presence of an excess of PMe3, a stepwise reaction was observed, giving first the mono-substituted, mixed-phosphine rhodacyclopentadiene intermediates and, subsequently, full conversion to the highly fluorescent 2,5 bis(arylethynyl)-rhodacyclopentadienes bearing only PMe3 ligands (by increasing the reaction temperature). With spectroscopically pure 2,5-bis(arylethynyl)rhodacyclopentadiene complexes A (bearing PMe3 as phosphine ligands) and rhodium 2,2-bph complexes B in hand, photophysical studies were conducted. The 2,5-bis(arylethynyl)rhodacyclopentadienes (A) are highly fluorescent with high quantum yields up to 54% and very short lifetimes (τ = 0.2 – 2.5 ns) in solution at room temperature. Even at 77 K in glass matrices, no additional phosphorescence is observed which is in line with previous observations made by Steffen et al., who showed that SOC mediated by the heavy metal atom in 2,5-bis(arylethynyl)rhodacyclopentadienes and 2,5 bis(arylethynyl)iridacyclopentadienes is negligible. The origin of this fluorescence lies in the pure intra-ligand (IL) nature of the excited states S1 and T1. The HOMO and the LUMO are nearly pure  and * ligand orbitals, respectively, and the HOMO is energetically well separated from the filled rhodium d orbitals. The absence of phosphorescence in transition metal complexes due to mainly IL character of the excited states is not unusual, even for heavier homologues than rhodium with greater SOC, resulting in residual S1 emission (fluorescence) despite ISC S1→Tn being sufficiently fast for population of T1 states. However, there are very few complexes that exhibit fluorescence with the efficiency displayed by our rhodacyclopentadienes, which involves exceptionally slow S1→Tn ISC on the timescale of nanoseconds rather than a few picoseconds or faster. In stark contrast, the 2,2’-bph rhodium complexes B are exclusively phosphorescent, as expected for 2nd-row transition metal complexes, and show long-lived (hundreds of s) phosphorescence (Ф = 0.01 – 0.33) at room temperature in solution. As no fluorescence is detected even at low temperature, it can be assumed that S1→Tn ISC must be faster than both fluorescence and non-radiative decay from the S1 state. This contrasts with the behavior of the isomeric 2,5-bis(arylethynyl)rhodacyclopentadienes for which unusually slow ISC occurs on a timescale that is competitive with fluorescence (vide supra). The very small values for the radiative rate constants, however, indicate that the nature of the T1 state is purely 3IL with weak SOC mediated by the Rh atom. The phosphorescence efficiency of these complexes in solution at room temperature is even more impressive, as non-radiative coupling of the excited state with the ground state typically inhibits phosphorescence. Instead, the rigidity of the organic -system allows the ligand-based excited triplet state to exist in solution for up to 646 s and to emit with high quantum yields for biphenyl complexes. The exceptionally long lifetimes and small radiative rate constants of the rhodium biphenyl complexes are presumably a result of the large conjugated -system of the organic ligand. According to TD DFT studies, the T1 state involves charge-transfer from the biphenyl ligand into the arylethynyl moiety away from the rhodium atom. This reduces the SOC of the metal center that would be necessary for fast phosphorescence. These results show that the π-chromophoric ligand can gain control over the photophysical excited state behavior to such an extent that even heavy transition metal atoms like rhodium participate in increasing the fluorescence such as main-group analogues do. Furthermore, in the 2,2’-bph rhodium complexes, the rigidity of the organic -system allows the ligand-based excited triplet state to exist in solution for up to hundreds of s and to emit with exceptional quantum yields. Therefore, investigations of the influence of the ligand sphere around the rhodium center have been made to modify the photophysical properties and furthermore to explore the reaction behavior of these rhodium complexes. Bearing in mind that the P(p-tolyl)3 ligands can easily be replaced by the stronger -donating PMe3 ligands, ligand exchange reactions with N heterocyclic carbenes (NHCs) as even stronger -donors was investigated. Addition of two equivalents of NHCs at room temperature led to the release of one equivalent of P(p-tolyl3) and formation of the mono-substituted NHC rhodium complex. The reaction of isolated mono-NHC complex with another equivalent of NHC at room temperature did not result in the exchange of the second phosphine ligand. Moderate heating of the reaction to 60 °C, however, resulted in the formation of tetra-substituted NHC rhodium complex [Rh(nPr2Im)4]+[acac]-. To circumvent the loss of the other ligands in the experiments described above, a different approach was investigated to access rhodacyclopentadienes with NHC instead of phosphine ligands. Reaction of the bis-NHC complex [Rh(κ2-O,O-acac)(nPr2Im)2] with , bis(arylbutadiynyl)alkanes at room temperature resulted 2,5-bis(arylethynyl)-rhodacyclopentadienes with the NHC ligands being cis or trans to each other as indicated by NMR spectroscopic measurements and single-crystal X-ray diffraction analysis. Isolation of clean material and a fundamental photophysical study could not be finished for reasons of time within the scope of this work. Furthermore, shortening of the well conjugated -system of the chromophoric ligand (changing from tetraynes to diynes) was another strategy to examine the reaction behavior of theses ligands with rhodium(I) complexes and to modify the excited state behavior of the formed rhodacyclopentadienes. The reaction of [Rh(κ2-O,O-acac)(PMe3)2] with 1,7 diaryl 1,6-heptadiynes (diynes) leads to the selective formation of 2,5 bis(aryl)rhodacyclopentadienes. These compounds, however, are very weakly fluorescent with quantum yields ФPL < 1, and very short emission lifetimes in toluene at room temperature. Presumably, vibrational modes of the bis(phenyl)butadiene backbone leads to a higher rate constant for non-radiative decay and is thus responsible for the low quantum yields compared to their corresponding PMe3 complexes with the bis(phenylethynyl)butadiene backbone at room temperature. No additional phosphorescence, even at 77 K in the glass matrix is observed. Chancing the phosphine ligands to P(p-tolyl)3, reactions of [Rh(κ2-O,O-acac)(P(p-tolyl3)2)] with 1,7-diaryl-1,6-heptadiynes, however, resulted in a metal-mediated or -catalyzed cycloaddition reaction of alkynes and leads to full conversion to dimerization and trimerization products and recovery of the rhodium(I) starting material. This is intuitive, considering that P(Ar)3 (Ar = aryl) ligands are considered weaker -donor ligands and therefore have a higher tendency to dissociate. Therefore, rhodium(I) complexes with aryl phosphines as ligands have an increasing tendency to promote catalytic reactions, while the stronger -donating ligands (PMe3 or NHCs) promote the formation of stable rhodium complexes. Finally, in Chapter 4, the findings of the work conducted on N-heterocyclic carbenes (NHCs) and cyclic (alkyl)(amino)carbenes (CAACs) is presented. These compounds have unique electronic and steric properties and are therefore of great interest as ligands and organo-catalysts. In this work, studies of substitution reactions involving novel carbonyl complexes of rhodium and nickel are reported. For characterization and comparison of CAACmethyl with the large amount of data available for NHC and sterically more demanding CAAC ligands, an overview on physicochemical data (electronics, sterics and bond strength) is provided. The reaction of [Rh(-Cl)(CO)2]2 with 2 equivalents of CAACmethyl at low temperature afforded the mononuclear complex cis-[(RhCl(CO)2(CAACmethyl)]. However, reacting [Rh( Cl)(CO)2]2 with CAACmethyl at room temperature afforded a mixture of complexes. The mononuclear complex [(RhCl(CO)(CAACmethyl)2], the chloro-bridged complexes [(Rh2( Cl)2(CO)3(CAACmethyl)], [Rh(-Cl)(CO)(CAACmethyl)]2 and a carbon monoxide activation product were formed. The carbon monoxide activation product is presumably formed via the reaction of two equivalents of the CAAC with CO to give the bis-carbene adduct of CO, and subsequent rearrangement via migration of the Dipp moiety. While classical N-heterocyclic carbenes are not electrophilic enough to react with CO, related diamidocarbenes and alkyl(amino)carbenes undergo addition reactions with CO to give the corresponding ketenes. Consequently, to obtain the CAAC-disubstituted mononuclear complex selectively, 8 equivalents of CAACmethyl were reacted with 1 equivalent of [Rh(-Cl)(CO)2]2. For the evaluation of TEP values, [Ni(CO)3(CAAC)] was synthesized in collaboration with the group of Radius. With the complexes [(RhCl(CO)(CAACmethyl)2] and [Ni(CO)3(CAAC)] in hand, it was furthermore possible to examine the electronic and steric parameters of CAACmethyl. Like its bulkier congeners CAACmenthyl and CAACcy, the methyl-substituted CAAC is proposed to be a notably stronger -donor than common NHCs. While it has a very similar TEP value of 2046 cm-1, it additionally possess superior -acceptor properties (P = 67.2 ppm of phosphinidene adduct). CAACs appear to be very effective in the isolation of a variety of otherwise unstable main group and transition metal diamagnetic and paramagnetic species. This is due to their low-lying LUMO and the small singlet-triplet gap. These electronic properties also allow free CAACs to activate small molecules with strong bonds. They also bind strongly to transition metal centers, which enables their use under harsh conditions. One recent development is the use of CAACs as ligands in transition metal complexes, which previously were only postulated as short-lived catalytic intermediates.[292,345] The availability of these reactive species allows for a better understanding of known catalytic reactions and the design of new catalysts and, moreover, new applications. For example Radius et al.[320] prepared a CAAC complex of cobalt as a precursor for thin-film deposition and Steffen et al.[346] reported a CAAC complex of copper with very high photoluminescent properties, which could be used in LED devices. With the development of cheap and facile synthetic methods for the preparation of CAACs and their corresponding transition metals complexes, as well as the knowledge of their electronic properties, it is safe to predict that applications in and around this field of chemistry will continue to increase. N2 - Die photochemischen und photophysialischen Eigenschaften von Übergangsmetall-komplexen sind von großem Interesse, da solche Materialien für eine Vielzahl von Anwendungen, zum Beispiel in der Photokatalyse, für Sensing und Imaging, als Multiphotonenabsorptionsmaterialien und in der Herstellung von OLEDs genutzt werden können. Ein grundlegendes Verständnis des angeregten Zustands von Übergangsmetallverbindungen ist daher für die Entwicklung neuer Materialen für die oben genannten Anwendungen maßgeblich. Grundsätzlich können die Lumineszenzeigenschaften dieser Klasse von Verbindungen einerseits durch das Metall selbst, oder andererseits durch subtile Modifikation der Ligandensphäre beeinflusst werden. Darüber hinaus spielen Übergangsmetallkomplexe weiterhin eine wichtige Rolle in der modernen Synthesechemie. Insbesondere können Bindungen selektiv geknüpft werden, die in der klassischen organischen Chemie nur schwer zugänglich oder nicht realisierbar sind. So ermöglichen sie beispielsweise die effiziente und selektive Knüpfung von Kohlenstoff-Kohlenstoff-Bindungen. Ein bekanntes Beispiel für solch eine Bindungsknüpfung sind metallkatalysierte Ringschlussreaktionen. Hierbei spielen Metallacyclopentadien-Komplexe als Zwischenstufen bei metallvermittelten oder katalysierten Ringschlussreaktionen, wie beispielsweise der [2+2+2] Cyclotrimerisierung von Alkinen, eine Schlüsselrolle. Die jüngsten Forschungen konzentrierten sich auf die Synthese und Charakterisierung dieser metallacyclischen Zwischenprodukte, auch MC4-Ringsysteme genannt, welche strukturell mit Hauptgruppen-EC4-Systemen wie Borolen, Silolen, Thiophenen und Phospholen verwandt sind. Insgesamt ist diese Gruppe von Verbindungen (EC4-Analoga) wohlbekannt und hat aufgrund ihrer Elektronentransport- und optischen Eigenschaften beträchtliche Aufmerksamkeit erregt. Im Gegensatz zu Übergangsmetallanaloga zeigen Hauptgruppen-EC4-Systeme jedoch keine Phosphoreszenz, was auf eine ineffiziente Spin-Bahn-Kopplung zurückzuführen ist. Im Vergleich dazu zeigen Übergangsmetalle der fünften und sechsten Periode Phosphoreszenz, weshalb es von großem Interesse ist, die Lumineszenzeigenschaften der Metallacyclopentadiene näher zu untersuchen. Im Jahr 2001 entwickelte Marder et al. eine Eintopfsynthese von lumineszierenden 2,5 Bis(arylethinyl)rhodacyclopentadienen durch reduktive Kupplung von 1,4 Diarylbuta 1,3 diinen an einer geeigneten Rhodium(I)-Vorstufe. In den vergangenen Jahren wurden eine Vielzahl von Liganden (z.B. TMSA, S,S'-Diethyldithiocarbamat, usw.) und Substarten (1,4-Bis(p-R-phenyl)-1,3-butadiine oder verknüpfte ,-Bis(p-R-arylethinyl)alkane (R = Elektronen-ziehende oder schiebende Gruppen)) untersucht, wobei stets eine selektive Reaktion zu 2,5-Bis(arylethinyl)rhodacyclopentadien-Komplexen beobachtet werden konnte. Trotz des Zentralatoms Rhodium wurde ausschließlich Fluoreszenz beobachtet. Um den Einfluss der Ligandensphäre um das Rhodiumatom auf die Interkombination (Intersystem-Crossing Prozesse, ISC) in diesen fluoreszierenden Rhodacyclopentadienen zu untersuchen und den Metallcharakter in den Grenzorbitalen durch Destabilisierung der Rhodium-d-Orbitale zu erhöhen, wurde Acetylacetonat (acac), ein  Elektronen-schiebender Ligand, eingeführt. Interessanterweise beobachtete Tay im Jahr 2010 durch Reaktion von , Bis(p R arylbutadiinyl)alkanen mit [Rh(κ2-O,O-acac)(PMe3)2] nicht nur die fluoreszierenden 2,5-Bis(arylethinyl)-rhodacyclopentadiene, sondern auch einen isomeren Rhodium 2,2' Biphenyl Komplex, der in ersten photophysikalischen Studien Phosphoreszenz zeigte. In dieser Arbeit wurden das Reaktionsverhalten und die Reaktionsbedingungen von [Rh(κ2 O,O acac)(L)2] (L = PMe3, P(p-tolyl)3) mit verschiedenen , Bis(p R-arylbutadiinyl)alkanen untersucht. Weiterhin wurde die Trennung der beiden Isomere 2,5-Bis(arylethinyl)rhodacyclopentadien (A) und Rhodium-2,2'-bph-Komplex (B) optimiert und die photophysikalischen Eigenschaften der beiden Isomere untersucht. Die Reaktion von [Rh(κ2-O,O-acac)(P(p-tolyl3)2)] mit ,-Bis(arylbutadiinyl)alkanen führt selektiv zum 2,5-Bis(arylethinyl)rhodacyclopentadien-Isomer A, welches nur schwach fluoresziert. Wird jedoch der Phosphanligand P(p-tolyl3) mit PMe3 ersetzt, führt die Reaktion von [Rh(κ2 O,O acac)(PMe3)2] und ,-Bis(arylbutadiinyl)alkanen zu zwei verschiedenen Isomeren von MC4-Metallacyclen mit grundverschiedenen photophysikalischen Eigenschaften. 2,5 Bis(arylethinyl)rhodacyclopentadiene (A) werden durch eine reduktive [2+2]-Kopplung an Rhodium gebildet und weisen eine intensive Fluoreszenz auf. Das zweite Isomer waren Rhodium-2,2'-bph-Komplexe (B), die Phosphoreszenz zeigen. Dies rührt von einer ungewöhnlichen [4+2]-Cycloadditionsreaktion und einer nachfolgenden  H Verschiebung her. Die Kontrolle des Isomeren-Verhältnisses von 2,5-Bis(arylethinyl)rhodacyclopentadienen (A) und Rhodium-2,2'-bph-Komplexen (B) erfolgt durch Modifizierung der Alkankette des verknüpften ,-Bis(arylbutadiinyl)alkans. Die Veränderung der Ligandenbrücke von vier zu drei CH2-Gruppen begünstigt die Bildung des Rhodium-Biphenyl-Isomers B drastisch und bietet einen grundsätzlich neuen Weg, um Zugang zu photoaktiven Biphenyl-Metallverbindungen in guten Ausbeuten zu erhalten. Die photophysikalischen Eigenschaften sind bisher nur von einer begrenzten Anzahl an Biphenyl-Komplexen von Iridium, Palladium und Platin untersucht worden, wobei die geringe Menge an Beispielen vermutlich auf limitierte Synthesestrategien von verschieden-substituierten 2,2'-bph Übergangsmetall-komplexen zurückzuführen ist. Da die Reaktion von [Rh(κ2-O,O-acac)(P(p-tolyl3)2)] mit ,-Bis(arylbutadiinyl)alkanen selektiv zu 2,5-Bis(arylethinyl)rhodacyclopentadien-Komplexen mit P(p-tolyl3) als Phosphanliganden führt, und um die zeitaufwendige Trennung der Isomere zu vermeiden, wurde eine neue Synthesestrategie für 2,5 Bis(arylethinyl)rhodacyclopentadien-Komplexe mit PMe3 als Phosphanliganden entwickelt. Die relativ schwache Rhodium-P(p tolyl)3 Bindung von 2,5 Bis(arylethinyl)rhodacyclopentadien-Komplexen ermöglicht Liganden-Austauschreaktionen. Durch Zugabe von PMe3 im Überschuss bei Raumtemperatur wurde eine schrittweise Reaktion beobachtet, wobei zuerst die monosubstituierte Phosphan Rhodacyclopentadien-Zwischenstufe und anschließend durch Erwärmung vollständige Umsetzung und somit der zweifach PMe3 substituierte 2,5 Bis(arylethinyl)rhodacyclopentadien-Komplex erhalten werden konnte. Die isolierten 2,5-Bis(arylethinyl)rhodacyclopentadien-Komplexe A (mit PMe3 als Phosphanliganden) und Rhodium-2,2'-bph-Komplexe B wurden auf ihre photophysikalischen Eigenschaften hin untersucht. Isomer A ist stark fluoreszierend mit hohen Quantenausbeuten von bis zu 54% und sehr kurzen Lebenszeiten (τ = 0,2  2,5 ns) in Lösung bei Raumtemperatur. Sogar bei 77 K in Glasmatrizen wird keine Phosphoreszenz beobachtet, was im Einklang mit früheren Beobachtungen von Steffen et al. ist, die zeigten, dass Spin-Bahn-Kopplung (SOC) durch das Schwermetallatom in 2,5-Bis(arylethinyl)rhodacyclopentadienen und 2,5 Bis(arylethinyl)iridacyclopentadienen vernachlässigbar ist. Der Ursprung dieser Fluoreszenz liegt in der reinen Intra-Ligand-Natur der angeregten Zustände S1 und T1. Das HOMO und das LUMO sind fast reine - und *-Ligandenorbitale und das HOMO ist energetisch gut von den gefüllten d-Orbitalen des Rhodiums getrennt. Die Abwesenheit von Phosphoreszenz in Übergangsmetallkomplexen ist aufgrund des dominierenden IL-Charakters der angeregten Zustände bei schwereren Homologen, im Vergleich zu Rhodium, und somit größeren Spin Bahn Kopplungskonstanten nicht ungewöhnlich, auch wenn ISC von S1→Tn ausreichend effizient ist, um Triplett-Zustände zu erreichen. Allerdings gibt es im Vergleich zu unseren Rhodacyclopentadienen sehr wenige Komplexe, die Fluoreszenz mit der Effizienz und mit diesen außergewöhnlich langsamen Intersystem-Crossing Prozessen im Nanosekundenbereich anstatt von einigen Pikosekunden oder schneller besitzen. Im Gegensatz dazu sind die Rhodium-2,2'-bph-Komplexe B ausschließlich phosphoreszierend, wie es für Übergangsmetallkomplexe erwartet wird. Sie zeigen bei langen Lebenszeiten (Hunderte von s) Phosphoreszenz-Quantenausbeuten von bis zu 33% bei Raumtemperatur in Lösung. Da auch bei niedriger Temperatur keine Fluoreszenz festgestellt wird, kann davon ausgegangen werden, dass S1→Tn-ISC schneller als Fluoreszenz und strahlungslose Relaxation aus dem S1-Zustand sein muss. Dies ist jedoch gegenläufig zum Verhalten der isomeren 2,5 Bis(arylethinyl)rhodacyclopentadiene, für die ein ungewöhnlich langsames ISC auf der Zeitskala auftritt, die mit Fluoreszenz konkurrenzfähig ist (siehe oben). Die sehr kleinen Werte für die Strahlungsgeschwindigkeitskonstanten weisen jedoch darauf hin, dass der T1-Zustand reinen 3IL-Charakter mit schwacher Spin-Bahn-Kopplung vom Rhodiumatom ausgehend besitzt. Die Phosphoreszenz-Effizienz dieser Komplexe in Lösung bei Raumtemperatur ist noch beeindruckender, da die nicht-strahlende Kopplung des angeregten Zustands mit dem Grundzustand typischerweise die Phosphoreszenz hemmt. Stattdessen erlaubt die Rigidität des organischen -Systems, dass der ligandenbasierte angeregte Triplettzustand für mehrere hundert s stabil vorliegt und einen effizienten strahlenden Übergang in den Grundzustand vollzieht. Die außergewöhnlich langen Lebensdauern und kleinen Strahlungsgeschwindigkeitskonstanten der Rhodium-2,2'-bph-Komplexe sind vermutlich ein Ergebnis des hochkonjugierten -Systems des organischen Liganden. Laut unseren TD-DFT-Studien wird die Elektronendichte durch Ladungstransfer vom Rhodiumatom auf die Arylethinylreste übertragen und verringert somit die Spin-Bahn-Kopplung des Metallzentrums, die für eine kurze Phosphoreszenzlebenszeit erforderlich wäre. Diese Ergebnisse zeigen, dass der π-chromophore Ligand maßgeblich Einfluss auf den angeregten Zustand hat, dass auch schwere Übergangsmetallkomplexe wie Rhodium fluoreszieren können, wie es eigentlich nur von Hauptgruppenanaloga bekannt ist. Aufgrund der erhaltenen Ergebnisse und im Hinblick auf die Modifikation der optischen Eigenschaften und darüber hinaus das Reaktionsverhalten dieser Rhodiumkomplexe zu erforschen, wurde der Einfluss der Ligandensphäre um das Rhodiumatom untersucht. In Anbetracht dessen, dass die P(p-tolyl)3-Liganden leicht durch die stärker -donierenden PMe3 Liganden er-setzt werden können, wurden Ligandenaustausch-reaktionen mit N heterocyclischen Carbenen (NHCs) als noch stärkere -Donoren unter-sucht. Die Addition von zwei Äqui-valenten NHC führt bei Raumtemperatur zur Substitution von nur einem Äquivalent P(p-tolyl3) und somit zur Bildung des monosubstituierten NHC Rhodiumkomplexes. Die Reaktion des isolierten Mono-NHC-Komplexes mit einem weiteren Äquivalent NHC bei Raumtemperatur führte jedoch auch nicht zum gewünschten Austausch des zweiten Phosphanliganden. Erhöhung der Reaktionstemperatur auf 60 °C resultiert in der Bildung des tetra-substituierten NHC-Rhodiumkomplexes [Rh(nPr2Im)4]+[acac]-. Um zweifach NHC-substituierte 2,5 Bis(arylethinyl)-rhodacyclopentadiene zu erhalten, wurde eine neue Syntheseroute entwickelt. Durch Reaktion des Bis-NHC-Komplexes [Rh(κ2 O,O acac)(nPr2Im)2] mit , Bis(arylbutadiinyl)alkanen bei Raumtemperatur konnten 2,5 Bis(arylethinyl)rhodacyclopentadiene mit NHC-Liganden in cis- und trans-Stellung zueinander erhalten werden und durch NMR-spektroskopische Messungen und Einkristallröntgenbeugungsanalyse identifiziert werden. Die Isolierung und volle Charakterisierung sowie eine fundamentale photophysikalische Studie konnten im Rahmen dieser Arbeit aus Zeitgründen nicht beendet werden. Weiterhin wurden die optischen Eigenschaften und das Reaktionsverhalten von Rhodiumkomplexen mit einem verkürzten konjugierten -System des chromophoren Liganden untersucht. Hierbei werden zur Synthese anstatt Tetrainen, Diine eingesetzt. Die Umsetzung von [Rh(κ2-O,O-acac)(PMe3)2] mit 1,7-Diaryl-1,6-heptadiinen führt zur selektiven Bildung von 2,5 Bis(aryl)rhodacyclopentadienen. Diese Verbindungen sind jedoch nur sehr schwach fluoreszierend, was sich in Quantenausbeuten ФPL < 1% und sehr kurzen Emissionslebenszeiten in Toluol bei Raumtemperatur zeigt. Vermutlich führt Schwingung und Rotation des Bis(phenyl)butadien-Grundgerüsts vermehrt zu strahlungsloser Relaxation in den Grundzustand und ist somit für die geringeren Quantenausbeuten im Vergleich zu PMe3-Komplexen mit dem Bis(phenylethinyl)butadien-Grundgerüst verantwortlich. Phosphoreszenz konnte auch bei Tieftemperaturmessungen bei 77 K in der Glasmatrix nicht beobachtet werden. Die Reaktionen von [Rh(κ2-O,O-acac)(P(p-tolyl3)2)] mit 1,7-Diaryl-1,6-heptadiinen führten jedoch zu einer metallvermittelten oder -katalysierten Cycloadditionsreaktion von Alkinen und zur Bildung von Dimerisierungs- und Trimerisierungsprodukten. Arylphosphan-Liganden (P(Ar)3 (Ar = Aryl)) gelten als schwächere -Donorliganden und haben daher eine höhere Tendenz zur Dissoziation. Hiermit lässt sich erklären, dass Rhodium(I)-Komplexe mit Arylphosphan-Liganden eine zunehmende Tendenz haben, katalytische Reaktionen einzugehen, während die stärkeren -Donor-Liganden (PMe3 oder NHCs) die Bildung stabiler Rhodiumkomplexe begünstigen. In Kapitel 4 werden die Ergebnisse der Untersuchung von NHCs und cyclischen (Alkyl)(amino)carbenen (CAACs) präsentiert. Diese Verbindungen besitzen einzigartige elektronische und sterische Eigenschaften und sind daher als Liganden für Katalysatoren in organokatalytischen Reaktionen von großem Interesse. In dieser Arbeit werden Studien von Substitutionsreaktionen an neuartigen Carbonylkomplexen von Rhodium und Nickel vorgestellt. Zur Charakterisierung und zur Einordnung von CAACmethyl wird mit der großen Menge an Daten, die für NHCs und sterisch- anspruchsvollere CAAC-Liganden zur Verfügung stehen, ein Überblick über physikochemische Parameter (Elektronik, Sterik und Bindungsstärke) gegeben. Die Reaktion von [Rh(-Cl)(CO)2]2 mit zwei Äquivalenten CAACmethyl führte bei tiefer Temperatur zur Bildung des mononuklearen Komplexes cis-[(RhCl(CO)2(CAACmethyl)]. Bei Raumtemperatur jedoch bildeten sich durch Reaktion von [Rh(-Cl)(CO)2]2 mit CAACmethyl der mononukleare Komplex [(RhCl(CO)(CAACmethyl)2], die chlorverbrückten Komplexe [(Rh2( Cl)2(CO)3(CAACmethyl)], [Rh(-Cl)(CO)(CAACmethyl)]2 und ein Kohlenmonoxid-Aktivierungsprodukt. Das Kohlenmonoxid-Aktivierungsprodukt wird vermutlich durch Reaktion von zwei Äquivalenten des CAACs mit CO und anschließender Umlagerung durch Migration der Dipp-Gruppe gebildet. Während klassische N-heterocyclische Carbene nicht elektrophil genug sind, um mit CO zu reagieren, gehen verwandte Diamidocarbene und (Alkyl)(amino)carbene Additionsreaktionen mit CO ein. Für die selektive Synthese des CAAC-disubstituierten mononuklearen Komplexes wurden acht Äquivalente CAACmethyl mit einem Äquivalent [Rh(-Cl)(CO)2]2 umgesetzt. Für die Auswertung von TEP-Werten wurde [Ni(CO)3(CAAC)] in Zusammenarbeit mit der Gruppe um Radius synthetisiert. Durch Isolierung der Komplexe [(RhCl(CO)(CAACmethyl)2] und [Ni(CO)3(CAAC)] war es weiterhin möglich, die elektronischen und ster-ischen Parameter von CAACmethyl zu untersuchen. Genau wie die sterisch anspruchsvolleren Ver-bindungen CAACmenthyl und CAACcy, ist das Methyl substituierte CAAC im Vergleich zu üblichen NHCs ein besonders starker -Donor. Während dieser einen sehr ähnlichen TEP-Wert von 2046 cm-1 aufweist, besitzt er zusätzlich ausgezeichnete -Akzeptor-Eigenschaften (P = 67,2 ppm Phosphinidenaddukt). Durch das tiefliegende LUMO und das kleine HOMO-LUMO-Gap sind CAACs sehr effektiv für die Isolierung einer Vielzahl von ansonsten instabilen diamagnetischen und paramagnetischen Spezies von Hauptgruppen- und Übergangs-metallverbindngen. Die elektronischen Eigenschaften erlauben auch freien CAACs, kleine Moleküle mit starken Bindungen zu aktivieren. Eine neuere Entwicklung ist die Verwendung von CAACs als Liganden in Übergangsmetall-komplexen, die bisher nur als kurzlebige katalytische Zwischenstufen postuliert wurden.[271,324] Die Isolierung dieser reaktiven Spezies ermöglicht ein besseres Verständnis für bereits bekannte katalytische Reaktionen, sowie die Entwicklung neuer Katalysatoren und Anwendungen. Sol entwickelte Radius et al.[300] zum Beispiel einen CAAC-Komplex aus Kobalt als Vorläufer für die Dünnfilmabscheidung von Werkstoffen und Steffen et al.[326] berichtete von CAAC-Kupfer-Komplexen mit sehr hohen Photolumineszenz-Quantenausbeuten, die in LED Geräten eingesetzt werden könnten. Mit der Entwicklung von günstigen und flexiblen Synthesemethoden für die Herstellung von CAACs und deren entsprechenden Übergangsmetallkomplexen sowie der Kenntnis ihrer elektronischen Eigenschaften scheint es sicher, dass Anwendungen rund um dieses Ligandensystem weiter zunehmen werden. KW - Fluorescence KW - Phosphorescence KW - Rhodium KW - Sonogashira coupling KW - Carbenes KW - Übergangsmetallkomplexe KW - Rhodium KW - Lumineszenz Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-154844 ER - TY - JOUR A1 - Sheldrick, W. S. A1 - Linoh, H. A1 - Tacke, Reinhold A1 - Lambrecht, G. A1 - Moser, U. A1 - Mutschler, E. T1 - Crystal and molecular structures of the (R)-enantiomer and the racemate of the antimuscarinic agent (cyclohexyl)phenyl[2-(pyrrolidin-1-yl)ethyl]silanol (sila-procyclidine) N2 - The crystal structures of the (R)-enantiomer (2b) and the racemate (1 b) of (cyclohexyl)phenyl[2- (pyrrolidin-1-yl)ethyl]silanol (sila--procyclidine) have been determined by X -ray structural analysis. The absolute configuration of (2b) was established. (2b) crystallizes in the orthorhombic space group P2\(_1\)2\(_1\)2\(_1\), with a = 15.221 (1 ), b = 17.967(1 ), c = 6.463(1) A, and Z = 4. (1 b) crystallizes in the monoclinic space group P2\(_1\)/c, with a = 6.441 (1 ), b = 17.1 82(7), c = 16.707(4) A, ß = 1 03.86(2r, and Z = 4. The structures were refined to respective R factors of 0.044 and 0.058. The molecular conformation of sila-procyclidine is identical in the two different structures. lntermolecular 0-H • • • N hydrogen bonding is observed in both crystallattices.ln (1 b) (R)- and (S)-configurated molecules form centrosymmetric dimers, in (2b) the (R)-configurated molecules are linked into infinite chains parallel to the c axis. The (R)-configurated sila--procyclidine (2b) has higher affinity for ileal and atrial muscarinic receptors of the guinea pig than the (S)-configurated enantiomer (3b). KW - Anorganische Chemie Y1 - 1985 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63776 ER - TY - THES A1 - Selinka, Carola T1 - Synthetic routes to asymmetrical Alkylenediimidosulfites and Novel Heteroarene-linked Bis-diimidosulfinates and Bis-triimidosulfonates T1 - Synthese Asymmetrischer Alkylendiimidosulfite und Neuer Heteroaren-verknüpfter Bis-diimidosulfinate und Bis-triimidosulfonate N2 - This theses deals with the syntheses and the coordination behaviour of polyimidosulfur anions like S(NR)32–, S(NR)42–, RS(NR)2– or RS(NR)3–, the nitrogen analogues of the well known oxo-anions SO32–, SO42–, RSO2– and RSO3–. The first aim was the synthesis of a triimidosulfite with three different NR-substituents, a so called asymmetrical triimidosulfite. In all reactions, that have been carried out to obtain a triimidosulfite with three (or two) different residues at nitrogen, the final product was always the dilithium sulfide adduct. The syntheses of chiral alkylenediimidosulfites was successful. Similar to Corey’s S-ylides (R2(O)S+––CR2) and Wittig’s phosphonium ylides (R3P+––CR2) these molecules contain a positively charged sulfur atom next to a carbanionic centre. The structures of the alkylenediimidosulfites are not influenced by the different substituents at nitrogen and carbon, respectively. In each case a doublecubic structure is received. The first members of a completely new class of compounds were synthesised: the aryl-bis-(diimidosulfinates). In this compounds two SN2 units are connected via a heteroaromatic linker, containing a potential donor centre in metal coordination. They represent, like the known alkyldiimidosulfinates, dipodal monoanionic ligands. In the field of sulfur (VI) chemistry the syntheses of aryltriimidosulfonates were successful. Hitherto it was believed, that only spatial less demanding lithium organics could be added to a S=N double bond in S(NtBu)3. This assumption was confirmed by the fact that methyl- and phenylacetylene-triimidosulfonate were the only known alkylsulfonates. Nevertheless, the addition of several lithiumheteroarenes to sulfurtriimide worked without difficulties. If the shape of the nucleophile permits to slot in between the NtBu substituents and to approach the electrophilic sulfur in the sulfurtriimide from the side rather than in an orthogonal angle, the addition reaction works smoothly. Although the steric demand of the tris(tert.-butyl)triimidosulfonate unit is very high, the synthesis of thiophene-bis-(triimidosulfonate) worked. The sulfonate moieties function as dipodal ligands. N2 - Die vorliegende Arbeit befaßt sich mit der Synthese und der Koordinationschemie von Polyimidoschwefel-Anionen wie S(NR)32–, S(NR)42–, RS(NR)2– oder RS(NR)3–, den Stickstoff-Analoga der bekannten Oxo-Anionen SO32–, SO42–, RSO2– und RSO3–. Ein Ziel der Arbeit war es, unsymmetrisch substituierte Triimidosulfite darzustellen. Durch Variation des Restes R durch Trimethylsilyl-, Cyclohexyl- oder aromatische Gruppen sollte die Synthese eines gemischt substituierten Triimidosulfits gelingen. Dieser Ansatz führte nicht zum Erfolg, in einer Vielzahl von Versuchen fiel das Dilithiumsulfid Addukt an. Ausgehend von bekannten asymmetrischen Alkyldiimidosulfinaten können chirale Alkylendiimidosulfite durch Deprotonierung des alpha-Kohlenstoffatoms mit einem Äquivalent MeLi bzw. BuLi synthetisiert werden. Diese besitzen jeweils Doppelkubusstruktur. In diesen Molekülen liegt, wie in den bekannten S-Yliden, ein positiv geladenes Schwefel-Atom neben einem carbanionischen Zentrum vor. Es gelang erstmals die Synthese zweier Heteroarensulfinate: Methylpyrrol-diimidosulfinat und Benzothiophendiimidosulfinat. Dabei trat neben der bereits bekannten Twist Tricyclus Struktur im Methylpyrroldiimidosulfinat, auch ein neuer Strukturtyp auf, das monomere Benzothiophendiimidosulfinat. Die Klasse der Aryl-bis-(diimidosulfinate) wurde neu erschlossen. Dabei handelt es sich um Systeme, in denen heteroaromatische Brücken zwei Diimidosulfinat-Einheiten verbinden. Sie sind, wie die bisher bekannten Alkyldiimidosulfinate, dipodale monoanionische Liganden. Eine Beteiligung des aromatischen Heteroatoms an der Metall-Koordination konnte bislang in keinem Fall beobachtet werden. Bisher wurde angenommen, dass nur sterisch wenig anspruchsvolle Systeme an eine N–S Doppelbindung des S(NtBu)3 addiert werden können. So existierten bisher nur das Methyl- und das Phenylacetylen-triimidosulfonat. In dieser Arbeit gelang jedoch die Darstellung diverser Aryltriimidosulfonate. Eine Additionsreaktion ist dann problemlos möglich, wenn die Geometrie des Lithium-organyls es erlaubt, in die Lücke zwischen den NtBu Substituenten zu gelangen und sich das Nucleophil somit dem elektrophilen Schwefel von der Seite annähern kann. Trotz des hohen sterischen Anspruchs der Triimidosulfonat-Einheit, gelang die Synthese des Thiophen-bis-(triimidosulfonats). Die Sulfonat-Einheiten fungieren hier, wie in anderen Sulfonat-Systemen, als dipodale Liganden, die dritte NtBu-Gruppe ist nicht an der Koordination beteiligt. KW - Schwefelylide KW - Schwefelylide KW - Polyimidoanionen KW - Bis-diimidosulfinate KW - Bis-triimidosulfonate KW - Sulfur Ylides KW - Polyimido Anions KW - Bis-diimidosulfinates KW - Bis-triimidosulfonates Y1 - 2002 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-4271 ER - TY - THES A1 - Schwenk, Nicola T1 - Seeing the Light: Synthesis of Luminescent Rhodacyclopentadienes and Investigations of their Optical Properties and Catalytic Activity T1 - Licht sehen: Synthese lumineszierender Rhodacyclopentadiene und Untersuchung ihrer optischen Eigenschaften und katalytischen Aktivität N2 - Luminescent organotransition metal complexes are of much current interest. As the large spin-orbit coupling of 2nd and 3rd row transition metals usually leads to rapid intersystem crossing from S1 to T1, which enables phosphorescence, there is a special interest in using triplet-emitting materials in organic or organometallic light emitting diodes (OLEDs). Marder et al. have found that, reductive coupling of both para-R-substituted diarylbutadiynes and diaryldodecatetraynes on Rh(PMe3)4X leads to quantitative yields of bis(arylethynyl)-rhodacyclopentadienes with complete regiospecificity (R = BMes2, H, Me, OMe, SMe, CF3, CN, CO2Me, NMe2, NO2, C≡C-TMS and X = -C≡C-TMS, -C≡C-C6H4-4-NMe2, -C≡C-C≡C-C6H4-4-NPh2, Me, Cl).47,49 Unexpectedly, these compounds show intense fluorescence rather than phosphorescence (ɸf = 0.33-0.69, t = 1.2 3.0 ns). The substituent R has a significant influence on the photophysical properties, as absorption and emission are both bathochromically shifted compared to R = H, especially for R = π-acceptor. To clarify the mechanism of the formation of the rhodacyclopentadienes, and to investigate further their unique photophysical properties, a series of novel, luminescent rhodacyclopentadienes with dithiocarbamate as a bidentate ligand at the rhodium centre has been synthesised and characterised (R = NO2, CO2Me, Me, NMe2, SMe, Ar = C6F4-4-OMe). The rhodacyclopentadienes have been formed via reductive coupling of diaryl undecatetraynes with [Rh(k2-S,S`-S2CNEt2)(PMe3)2]. The structures of a series of such compounds were solved by single crystal X-ray diffraction and are discussed in this work. The compounds were fully characterised via NMR, UV/Vis and photoluminescence spectroscopy as well as by elemental analysis, high-resolution mass spectrometry (HRMS) and X-ray diffraction. When heating the reactions, another isomer is formed to a certain extent. The so-called dibenzorhodacyclopentadienes already appeared during earlier studies of Marder et al., when acetylacetonate (acac) was employed as the bidentate ligand at the Rh-centre. They are probably formed via a [4+2] cycloaddition reaction and C-H activation, followed by a β-H shift. Use of the perfluorinated phenyl moiety Ar = C6F4-4-OMe provided a total new insight into the mechanism of formation of the rhodacyclopentadiene isomers and other reactions. Besides the formation of the expected rhodacyclopentadiene, a bimetallic compound was generated, isolated and characterised via X-ray crystallography and NMR spectroscopy, elemental analysis and high resolution mass spectrometry. For further comparison, analogous reactions with [Rh(k2 S,S` S2CNEt2)(PPh3)2] and a variety of diaryl undecatetraynes (R = NO2 CO2Me, Me, NMe2, SMe, Ar = C6F4-4-OMe) were carried out. They also yield the expected rhodacyclopentadienes, but quickly react with a second or even third equivalent of the tetraynes to form, catalytically, alkyne cyclotrimerisation products, namely substituted benzene derivatives (dimers and trimers), which are highly luminescent. The rhodacyclopentadienes (R = NO2, CO2Me, Me, SMe, Ar = C6F4-4-OMe) are stable and were isolated. The structures of a series of these compounds were obtained via single crystal X-ray crystallography and the compounds were fully characterised via NMR, UV/Vis and photoluminescence spectroscopy as well as by elemental analysis and HRMS. Another attempt to clarify the mechanism of formation of the rhodacyclopentadienes involved reacting a variety of diaryl 1,3-butadiynes (R = CO2Me, Me, NMe2, naphthyl) with [Rh(k2 S,S` S2CNEt2)(PMe3)2]. The reactions stop at an intermediate step, yielding a 1:1 trans π-complex, confirmed by single crystal X-ray diffraction and NMR spectroscopy. Only after several weeks, or under forcing conditions (µw / 80 °C, 75 h), the formation of another major product occurs, having bound a second diaryl 1,3-butadiyne. Based on earlier results of Murata, the product is identified as an unusual [3+2] cycloaddition product, ϭ-bound to the rhodium centre. N2 - Lumineszierende Übergangsmetallkomplexe sind aktuell sehr gefragt. Da die starke Spin-Bahn-Kopplung von Übergangsmetallen der zweiten und dritten Reihe zu einem schnellen Inter-System-Crossing führt, und damit zu Phosphoreszenz, gilt der Verwendung Triplett-emittierender Materialien in organischen und organometallischen Licht emittierenden Dioden (OLEDs) besonders großes Interesse. Marder et al. fanden heraus, dass die reduktive Kupplung von para R-substituierten Diarylbutadiinen und Diaryldodecatetraynen an Rh(PMe3)4X zu quantitativen Ausbeuten von Bis(Arylethinyl)-Rhodacyclopentadienen führt (R = BMes2, H, Me, OMe, SMe, CF3, CN, CO2Me, NMe2, NO2, C≡C-TMS and X = -C≡C-TMS, -C≡C-C6H4-4-NMe2, -C≡C-C≡C-C6H4-4-NPh2, Me, Cl), wobei sich nur ein Regioisomer bildet. Überaschenderweise zeigen diese Verbindungen intensive Fluoreszenz an Stelle von Phosphoreszenz (ɸf = 0.33-0.69, t = 1.2 3.0 ns). Der Substituent R hat großen Einfluss auf die Lumineszenz Eigenschaften. Die Absorption sowie Emission sind im Vergleich zu R = H jeweils bathochrom verschoben, wobei der Effekt im Fall von R = π-Akzeptor stärker ausgeprägt ist. Um den Bildungsmechanismus der Rhodacyclopentadiene aufzuklären und ihre einzigartigen Lumineszenz Eigenschaften intensiver zu untersuchen, wurde eine Reihe von neuen, lumineszierenden Rhodacyclopentadienen mit dem bidentaten Liganden Dithiocarbamat am Rhodium-Zentrum dargestellt und charakterisiert (R = NO2, CO2Me, Me, NMe2, SMe, Ar = C6F4-4-OMe). Die Rhodacyclopentadiene entstanden durch reduktive Kupplung von Diarylundecatetrainen mit [Rh(k2-S,S`-S2CNEt2)(PMe3)2]. Die Strukturen einiger solcher Verbindungen wurden mit Hilfe von Röntgenstrukturanalyse gelöst und werden in der vorliegenden Arbeit diskutiert. Die Verbindungen wurden mit Hilfe von NMR, optischer Spektroskopie, sowie Elementaranalyse, hochauflösender Massenspektrometrie (HRMS) und Röntgenstrukturanalyse vollcharakterisiert. Wurden die Reaktionen erhitzt, bildete sich zu einem gewissen Anteil ein anderes Isomer. Das sogenannte Dibenzorhodacyclopentadien tauchte bereits während früherer Untersuchungen von Marder et al. auf, wobei Acetylacetonat (acac) als bidentater Ligand am Rh-Zentrum eingesetzt wurde. Diese werden möglicherweise durch eine [4+2] Zykloaddition und eine C-H Aktivierung, gefolgt von einem β-H Shift gebildet. Reaktionen die mit dem perfluorierten Phenylrest Ar = C6F4-4-OMe durchgeführt wurden, ermöglichten völlig neue Einblicke in den Bildungsmechanismus der Isomere der Rhodacyclopentadiene und anderer Reaktionen. Neben der Bildung des erwarteten Rhodacyclopentadiens, entstand eine bimetallische Verbindung, welche isoliert und mittels Röntgenstrukturanalyse, NMR-Spektroskopie, Elementaranalyse und HRMS charakterisiert wurde. Um weitere Vergleiche anzustellen, wurde analoge Reaktionen mit einer Reihe von Diarylundecatetrainen (R = NO2 CO2Me, Me, NMe2, SMe, Ar = C6F4-4-OMe) und [Rh(k2 S,S` S2CNEt2)(PPh3)2] durchgeführt. Diese führen ebenfalls zu den erwarteten Rhodacyclopentadienen, jedoch erfolgt schnelle Reaktion mit einem zweiten oder sogar dritten Äquivalent Tetrain um katalytisch Alkin-Trimerisierungsprodukte zu bilden, bei denen es sich um substituierte Benzolderivate (Dimere und Trimere) handelt. Diese sind stark lumineszierend. Die Rhodacyclopentadiene sind stabil und konnten isoliert werden. Von einigen Verbindungen konnten Röntgenstrukturanalysen durchgeführt werden. Alle isolierten Verbindungen wurden mittels NMR und optischer Spektroskopie, sowie Elementaranalyse und HRMS charakterisiert. Ein weiterer Ansatz um den Bildungsmechanismus der Rhodacyclopentadiene aufzuklären beinhaltete die Reaktion einer Reihe von Diarylbutadiinen (R = CO2Me, Me, NMe2, naphthyl) mit [Rh(k2 S,S` S2CNEt2)(PMe3)2]. Die Reaktionen stoppen an der Stelle eines Zwischenproduktes, bei dem es sich um einen 1:1 trans π-Komplex handelt, der mittels Röntgenstrukturanalyse und NMR Spektroskopie bestätigt werden konnte. Erst nach einigen Wochen oder unter harschen Reaktionsbedingungen (µw / 80 °C, 75 h), konnte die Bildung eines weiteren Produktes beobachten werden, an welches ein zweites Diarylbutadiin gebunden ist. Ausgehend von früheren Ergebnissen von Murata, wurde das Produkt als ein [3+2]-Zykloadditionsprodukt identifiziert. KW - Rhodium KW - Fluoreszenz KW - Rhodacyclopentadiene KW - Cyclotrimerisation KW - Fluorescence KW - Organometallic chemistry Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-149550 ER - TY - JOUR A1 - Schulz, Ellina A1 - Mawamba, Viviane A1 - Löhr, Mario A1 - Hagemann, Carsten A1 - Friedrich, Alexandra A1 - Schatzschneider, Ulrich T1 - Structure–activity relations of Pd(II) and Pt(II) thiosemicarbazone complexes on different human glioblastoma cell lines JF - Zeitschrift für Anorganische und Allgemeine Chemie N2 - Ten thiosemicarbazone ligands obtained by condensation of pyridine-2-carbaldehyde, quinoline-2-carbaldehyde, 2-acetylpyridine, 2-acetylquinoline, or corresponding 2-pyridyl ketones with thiosemicarbazides RNHC(S)NHNH\(_{2}\) and R=CH\(_{3}\), C\(_{6}\)H\(_{5}\) were prepared in good yield. The reaction of [PdCl\(_{2}\)(cod)] with cod=1,5-cyclooctadiene or K\(_{2}\)[PtCl\(_{4}\)] resulted in a total of 17 Pd(II) and Pt(II) complexes isolated in excellent purity, as demonstrated by \(^{1}\)H, \(^{13}\)C, and, where applicable, \(^{195\)Pt NMR spectroscopy combined with CHNS analysis. The cytotoxicity of the title compounds was studied on four human glioblastoma cell lines (GaMG, U87, U138, and U343). The most active compound, with a Pd(II) metal centre, a 2-quinolinyl ring, and methyl groups on both the proximal C and distal N atoms exhibited an EC\(_{50}\) value of 2.1 μM on the GaMG cell lines, thus being slightly more active than cisplatin (EC\(_{50}\) 3.4 μM) and significantly more potent than temozolomide (EC\(_{50}\) 67.1 μM). Surprisingly, the EC\(_{50}\) values were inversely correlated with the lipophilicity, as determined with the “shake-flask method”, and decreased with the length of the alkyl substituents (C\(_{1}\)>C\(_{8}\)>C\(_{10}\)). Correlation with the different structural motifs showed that for the most promising anticancer activity, a maximum of two aromatic rings (either quinolinyl or pyridyl plus phenyl) combined with one methyl group are favoured and the Pd(II) complexes are slightly more potent than their Pt(II) analogues. KW - glioblastoma KW - platinum KW - palladium KW - thiosemicarbazone KW - anticancer activity Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318281 SN - 0044-2313 VL - 648 IS - 12 ER - TY - JOUR A1 - Schorr, Fabian A1 - Schopper, Nils A1 - Riensch, Nicolas A1 - Fantuzzi, Felipe A1 - Neder, Marco A1 - Dewhurst, Rian D. A1 - Thiess, Thorsten A1 - Brückner, Tobias A1 - Hammond, Kai A1 - Helten, Holger A1 - Finze, Maik A1 - Braunschweig, Holger T1 - Controlled Synthesis of Oligomers Containing Main-Chain B(sp\(^{2}\))-B(sp\(^{2}\)) Bonds JF - Chemistry—A European Journal N2 - A number of novel alkynyl-functionalized diarylbis(dimethylamino)diboranes(4) are prepared by salt metathesis, and the appended alkynyl groups are subjected to hydroboration. Their reactions with monohydroboranes lead to discrete boryl-appended diborane(4) species, while dihydroboranes induce their catenation to oligomeric species, the first known examples of well-characterized macromolecular species with B−B bonds. The oligomeric species were found to comprise up to ten repeat units and are soluble in common organic solvents. Some of the oligomeric species have good air stability and all were characterized by NMR and vibrational spectroscopy and size-exclusion chromatography techniques. KW - oligomerization KW - boron KW - catenation KW - diborane KW - hydroboration Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-257274 VL - 27 IS - 64 ER - TY - JOUR A1 - Schneider, Leon N. A1 - Tanzer Krauel, Eva-Maria A1 - Deutsch, Carl A1 - Urbahns, Klaus A1 - Bischof, Tobias A1 - Maibom, Kristina A. M. A1 - Landmann, Johannes A1 - Keppner, Fabian A1 - Kerpen, Christoph A1 - Hailmann, Michael A1 - Zapf, Ludwig A1 - Knuplez, Tanja A1 - Bertermann, Rüdiger A1 - Ignat'ev, Nikolai V. A1 - Finze, Maik T1 - Stable and Storable N(CF\(_{3}\))\(_{2}\) Transfer Reagents JF - Chemistry—A European Journal N2 - Fluorinated groups are essential for drug design, agrochemicals, and materials science. The bis(trifluoromethyl)amino group is an example of a stable group that has a high potential. While the number of molecules containing perfluoroalkyl, perfluoroalkoxy, and other fluorinated groups is steadily increasing, examples with the N(CF\(_{3}\))\(_{2}\) group are rare. One reason is that transfer reagents are scarce and metal-based storable reagents are unknown. Herein, a set of Cu\(^{I}\) and Ag\(^{I}\) bis(trifluoromethyl)amido complexes stabilized by N- and P-donor ligands with unprecedented stability are presented. The complexes are stable solids that can even be manipulated in air for a short time. They are bis(trifluoromethyl)amination reagents as shown by nucleophilic substitution and Sandmeyer reactions. In addition to a series of benzylbis(trifluoromethyl)amines, 2-bis(trifluoromethyl)amino acetate was obtained, which, upon hydrolysis, gives the fluorinated amino acid N,N-bis(trifluoromethyl)glycine. KW - silver KW - amination KW - copper KW - fluorinated ligands KW - N ligands Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256890 VL - 27 IS - 42 ER - TY - THES A1 - Schmitt, Rainer T1 - P-H-functionalized Phosphenium Tungsten Complexes : exchange reactions at the phosphorus and cycloadditions with heteroallenes T1 - P-H-funktionelle Phosphenium-Wolfram-Komplexe: Austauschreaktionen am Phosphor und Cycloadditionen mit Heteroallenen N2 - ... N2 - ... KW - Phospheniumkomplexe KW - Wolframkomplexe KW - Cycloaddition KW - Phosphenium KW - Phosphiniden KW - Wolfram KW - phosphenium KW - phosphinidene KW - tungsten Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-15818 ER - TY - JOUR A1 - Schmidt, Uwe A1 - Werner, Luis A1 - Arrowsmith, Merle A1 - Deissenberger, Andrea A1 - Hermann, Alexander A1 - Hofmann, Alexander A1 - Ullrich, Stefan A1 - Mattock, James D. A1 - Vargas, Alfredo A1 - Braunschweig, Holger T1 - trans-Selective Insertional Dihydroboration of a cis-Diborene: Synthesis of Linear sp\(^3\)-sp\(^2\)-sp\(^3\)-Triboranes and Subsequent Cationization JF - Angewandte Chemie International Edition N2 - The reaction of aryl‐ and amino(dihydro)boranes with dibora[2]ferrocenophane 1 leads to the formation 1,3‐trans ‐dihydrotriboranes by formal hydrogenation and insertion of a borylene unit into the B=B bond. The aryltriborane derivatives undergo reversible photoisomerization to the cis ‐1,2‐μ‐H‐3‐hydrotriboranes, while hydride abstraction affords cationic triboranes, which represent the first doubly base‐stabilized B3H4\(^+\) analogues. KW - cations KW - hydroboration KW - photoisomerization KW - triboranes KW - diborenes Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-208090 VL - 59 IS - 1 ER - TY - INPR A1 - Schmidt, Uwe A1 - Fantuzzi, Felipe A1 - Arrowsmith, Merle A1 - Hermann, Alexander A1 - Prieschl, Dominic A1 - Rempel, Anna A1 - Engels, Bernd A1 - Braunschweig, Holger T1 - Tuneable reduction of cymantrenylboranes to diborenes or borylene-derived boratafulvenes T2 - Chemical Communications N2 - Whereas the reduction of N-heterocyclic carbene (NHC)-stabilised cymantrenyldibromoboranes, (NHC)BBr\(_2\)Cym, in benzene results in formation of the corresponding diborenes (NHC)\(_2\)B\(_2\)Cym\(_2\), a change of solvent to THF yields a borylene of the form (NHC)\(_2\)BCym, stabilised through its boratafulvene resonance form. KW - Borylene KW - Diborene KW - Boranes Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-222149 ER - TY - JOUR A1 - Schmidt, Paul A1 - Fantuzzi, Felipe A1 - Klopf, Jonas A1 - Schröder, Niklas B. A1 - Dewhurst, Rian D. A1 - Braunschweig, Holger A1 - Engel, Volker A1 - Engels, Bernd T1 - Twisting versus delocalization in CAAC- and NHC-stabilized boron-based biradicals: the roles of sterics and electronics JF - Chemistry - A European Journal N2 - Twisted boron-based biradicals featuring unsaturated C\(_2\)R\(_2\) (R=Et, Me) bridges and stabilization by cyclic (alkyl)(amino)carbenes (CAACs) were recently prepared. These species show remarkable geometrical and electronic differences with respect to their unbridged counterparts. Herein, a thorough computational investigation on the origin of their distinct electrostructural properties is performed. It is shown that steric effects are mostly responsible for the preference for twisted over planar structures. The ground-state multiplicity of the twisted structure is modulated by the σ framework of the bridge, and different R groups lead to distinct multiplicities. In line with the experimental data, a planar structure driven by delocalization effects is observed as global minimum for R=H. The synthetic elusiveness of C\(_2\)R\(_2\)-bridged systems featuring N-heterocyclic carbenes (NHCs) was also investigated. These results could contribute to the engineering of novel main group biradicals. KW - chemistry KW - radicals KW - ab initio calculations KW - boron KW - carbene ligands KW - density functional calculations Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256636 VL - 27 IS - 16 ER - TY - JOUR A1 - Schleyer, Paul von Rague A1 - Kaupp, Martin A1 - Hampel, Frank A1 - Bremer, Matthias A1 - Mislow, Kurt T1 - Relationships in the Rotational Barriers of Group 14 Ethane Congeners H\(_3\)X-YH\(_3\) (X, Y = C, Si, Ge, Sn, Pb). Comparisons of ab Initio Pseudopotential and All-Electron Results N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60147 ER - TY - THES A1 - Schinzel, Sandra T1 - Quantum Chemical Investigations of Structure, Bonding and EPR Parameters of Manganese Complexes relevant to Photosystem II T1 - Quantenchemische Untersuchungen der Struktur, Bindungsverhältnissen und EPR Parametern von Mangankomplexen in Hinblick auf das Photosystem II N2 - Im Wasser-oxidierenden Cluster („oxygen-evolving complex“, OEC) des Photosystem II findet sich die primäre Quelle der Sauerstoffproduktion der Erde. Der OEC katalysiert in grünen Pflanzen unter Absorption von Sonnenlicht die Vierelektronen-Oxidation von Wasser zu Sauerstoff in einer zyklischen Sequenz von Oxidationszuständen (Kok-Zyklus). In dieser Arbeit wurden Strukturen, Spindichteverteilungen sowie EPR-Parameter ein-, zwei- und vierkerniger Mangankomplexe, die in Bezug auf den OEC modelliert wurden, mit Hilfe der Dichtefunktionaltheorie (DFT) berechnet. Hauptziel war das Verständnis der molekularen und elektronischen Struktur des vierkernigen Manganclusters des OEC durch direkten Vergleich mit experimentellen EPR-Daten. N2 - Photosynthesis is the most fundamental process of life on earth. The biological production of oxygen in plant photosynthesis occurs in photosystem II (PSII). Here two water molecules are coupled in a four-electron oxidation to one O2 molecule, catalyzed by a tetranuclear manganese complex, known as the oxygen-evolving complex (OEC). In this thesis, density-functional theory (DFT) methods were validated and subsequently employed to study structures, spin-density distributions and EPR parameters of mono-, di-, and tetranuclear complexes with regard to the OEC. The goal was to draw conclusions on the molecular and electronic structure of the OEC. KW - DFT KW - Photosystem II KW - EPR KW - DFT KW - Photosystem II KW - EPR KW - DFT KW - Photosystem II KW - EPR Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-35320 ER - TY - JOUR A1 - Scherpf, Thorsten A1 - Schwarz, Christopher A1 - Scharf, Lennart T. A1 - Zur, Jana-Alina A1 - Helbig, Andeas A1 - Gessner, Viktoria H. T1 - Ylide-Functionalized Phosphines: Strong Donor Ligands for Homogeneous Catalysis JF - Angewandte Chemie - International Edition N2 - Phosphines are important ligands in homogenous catalysis and have been crucial for many advances, such as in cross-coupling, hydrofunctionalization, or hydrogenation reactions. Herein we report the synthesis and application of a novel class of phosphines bearing ylide substituents. These phosphines are easily accessible via different synthetic routes from commercially available starting materials. Owing to the extra donation from the ylide group to the phosphorus center the ligands are unusually electron-rich and can thus function as strong electron donors. The donor capacity surpasses that of commonly used phosphines and carbenes and can easily be tuned by changing the substitution pattern at the ylidic carbon atom. The huge potential of ylide-functionalized phosphines in catalysis is demonstrated by their use in gold catalysis. Excellent performance at low catalyst loadings under mild reaction conditions is thus seen in different types of transformations. KW - carbanion KW - homogeneous catalysis KW - phosphine ligands KW - structure elucidation KW - ylides Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228551 VL - 57 IS - 39 ER - TY - JOUR A1 - Schenk, Wolfdieter A. A1 - Khadra, Almuetassem A1 - Burschka, Christian T1 - Sulphur(IV) compounds as ligands. XX: Adduct formation and ring opening of thiirane-1-oxide with organotin halides. Crystal structure of [(4-FC\(_6\)H\(_4\))\(_2\)SnCl\(_2\)(C\(_2\)H\(_4\)SO)\(_2\)] N2 - No abstract available KW - Kristallstruktur KW - Sulfur KW - Tin KW - Sulphur KW - Sulfoxide Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-31860 ER - TY - JOUR A1 - Schairer, Patrick A1 - Wagner, Stephan A1 - Geidel, Ekkehard T1 - An experimental introduction to basic principles of the interaction of electromagnetic radiation with matter JF - World Journal of Chemical Education N2 - To understand basic principles about the interaction of electromagnetic radiation with matter is often a challenge in chemical education due to the difficult theoretical background of this topic. The present contribution therefore offers an experimental based introduction into the basic principles of UV/Vis spectroscopy following a three-step strategy. The starting point is to construct a simple self-built spectrometer working within the visible range of light. Learners can explore the most important components of such a device and understand their functions without previous knowledge. In a second step, emission spectra of different common light sources are investigated and compared. Finally, spectroscopic experiments are suggested for chemical education such as the qualitative detection of cations and the quantitative analysis of the dye carmine in food. This context-based introduction links chemical applications with the everyday life. It can be presumed that this way, learners are provided an easier access to radiation-matter interaction. KW - UV/Vis spectroscopy KW - low-cost spectrometer KW - flame test KW - quantitative analysis KW - carmine Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-175811 VL - 6 IS - 1 ER - TY - JOUR A1 - Sarge, S. A1 - Cammenga, H. K. A1 - Becker, B. A1 - Rohr-Aehle, R. A1 - Tacke, Reinhold T1 - Energetic and kinetic investigation of thermally induced molecular rearrangements of esters of (hydroxymethyl)hydridosilanes by DSC N2 - No abstract available KW - Anorganische Chemie Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63850 ER - TY - JOUR A1 - Saalfrank, Christian A1 - Fantuzzi, Felipe A1 - Kupfer, Thomas A1 - Ritschel, Benedikt A1 - Hammond, Kai A1 - Krummenacher, Ivo A1 - Bertermann, Rüdiger A1 - Wirthensohn, Raphael A1 - Finze, Maik A1 - Schmid, Paul A1 - Engel, Volker A1 - Engels, Bernd A1 - Braunschweig, Holger T1 - cAAC‐Stabilized 9,10‐diboraanthracenes—Acenes with Open‐Shell Singlet Biradical Ground States JF - Angewandte Chemie International Edition N2 - Narrow HOMO–LUMO gaps and high charge‐carrier mobilities make larger acenes potentially high‐efficient materials for organic electronic applications. The performance of such molecules was shown to significantly increase with increasing number of fused benzene rings. Bulk quantities, however, can only be obtained reliably for acenes up to heptacene. Theoretically, (oligo)acenes and (poly)acenes are predicted to have open‐shell singlet biradical and polyradical ground states, respectively, for which experimental evidence is still scarce. We have now been able to dramatically lower the HOMO–LUMO gap of acenes without the necessity of unfavorable elongation of their conjugated π system, by incorporating two boron atoms into the anthracene skeleton. Stabilizing the boron centers with cyclic (alkyl)(amino)carbenes gives neutral 9,10‐diboraanthracenes, which are shown to feature disjointed, open‐shell singlet biradical ground states. KW - acenes KW - biradicals KW - bond Activation KW - boron KW - heterocycles Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-217795 VL - 59 IS - 43 SP - 19338 EP - 19343 ER - TY - JOUR A1 - Saalfrank, Christian A1 - Fantuzzi, Felipe A1 - Kupfer, Thomas A1 - Ritschel, Benedikt A1 - Hammond, Kai A1 - Krummenacher, Ivo A1 - Bertermann, Rüdiger A1 - Wirthensohn, Raphael A1 - Finze, Maik A1 - Schmid, Paul A1 - Engel, Volker A1 - Engels, Bernd A1 - Braunschweig, Holger T1 - cAAC‐stabilisierte 9,10‐Diboraanthracene – offenschalige Singulettbiradikale JF - Angewandte Chemie N2 - Geringe HOMO-LUMO-Abstände und eine hohe Ladungsträgermobilität prädestinieren die höheren Acene für Anwendungen im Bereich der Organoelektronik. Die Leistungsfähigkeit derartiger Verbindungen steigt hierbei dramatisch mit der Anzahl anellierter Benzolringe. Größere Acenmengen sind synthetisch bisher jedoch nur für Acene bis Heptacen verlässlich zugänglich. Theoretischen Studien zufolge besitzen (Oligo)acene offenschalige Singulettbiradikal- und (Poly)acene polyradikalische Grundzustände. Eindeutige experimentelle Belege für diese Vorhersagen sind hingegen äußerst selten. Durch den Einbau von zwei Boratomen in das Anthracengrundgerüst konnten wir den HOMO-LUMO-Abstand von Acenen dramatisch verringern und zwar ohne die Notwendigkeit einer Ausweitung des konjugierten π-Systems. Stabilisierung der Borzentren durch cyclische (Alkyl)(amino)carbene lieferte hierbei neutrale 9,10-Diboraanthracene mit disjunkten, offenschaligen Singulettbiradikal-Grundzuständen. KW - Acene KW - Bindungsaktivierung KW - Biradikale KW - Bor KW - Heterocyclen Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218582 VL - 132 IS - 43 SP - 19502 EP - 19507 ER - TY - THES A1 - Rumpel, Matthias T1 - Development of Components for Solid-State Batteries and their Characterization T1 - Entwicklung von Komponenten für Festkörperbatterien und deren Charakterisierung N2 - This Ph.D. thesis has addressed several main issues in current ASSB research within four studies. Ceramic ASSBs are meant to enable the implementation of Li-metal anodes and high voltage cathode materials, which would increase energy density, power density, life time as well as safety aspects in comparison with commercially available liquid electrolyte LiBs. In this thesis, several scientific questions arising on the cathode side of ASSBs have been focused on. With respect to the target system of a ternary composite bulk cathode consisting of ceramic active material, ceramic SSE and an electrically conductive component, studies about the thermal stabilities of these components and their impact on the electrochemical performance have been conducted. Particulate bulk cathode composites have to fulfil electrochemical, chemical, mechanical and structural requirements in order to compete with commercial LiBs. Particularly, the production process requires high-temperature sintering to obtain firmly bonded contacts in order to maximize the electrochemically active area, charge transfer and ionic conduction. However, interdiffusion, intermixing and decomposition of the initial components during sintering result in low-performing ASSBs so far. These side reactions during high-temperature treatment have been investigated in order to gain a better understanding of these mechanisms and to enable a better controlling of the manufacturing process as well as to simplify the choice of material combinations. The first two parts of this thesis deal with the thermal stability of the ceramic SSE LATP in combination with various active materials and with the validation of a probable improvement of the sintering process due to liquid phase sintering of LATP by adding Li3PO4. In the third and fourth parts, the impact of interdiffusion, intermixing and decomposition on the electrochemical performance of TF-SSBs based on the active material LMO and the ceramic SSE Ga-LLZO has been investigated. N2 - Diese Dissertation befasst sich in vier Studien mit mehreren Hauptthemen der aktuellen Festkörperbatterieforschung (engl.: all solid-state battery, ASSB). Keramische Festkörperbatterien sollen den Einsatz von Li-Metallanoden und Hochvoltkathodenmaterialien ermöglichen, was die Energiedichte, Leistungsdichte, Lebensdauer sowie Sicherheitsaspekte im Vergleich zu kommerziell erhältlichen Lithiumionenbatterien mit flüssigen Elektrolyten erhöhen würde. In dieser Arbeit wurden mehrere wissenschaftliche Fragestellungen untersucht, die sich auf der Kathodenseite von ASSBs ergeben. Im Hinblick auf das Zielsystem einer ternären Kompositkathode, bestehend aus keramischem Aktivmaterial, keramischem Festkörperelektrolyt und einer elektrisch leitfähigen Komponente, wurden Untersuchungen über die thermischen Stabilitäten dieser Komponenten und deren Einfluss auf die elektrochemische Leistung durchgeführt. Partikuläre Kathodenkomposite müssen elektrochemische, chemische, mechanische und strukturelle Anforderungen erfüllen, um mit kommerziellen Lithiumionenbatterien konkurrieren zu können. Insbesondere erfordert der Produktionsprozess ein Hochtemperatursintern, um eine stoffschlüssige Anbindung zu erhalten, damit die elektrochemisch aktive Fläche, der Ladungstransfer und die Ionenleitung maximiert werden können. Allerdings führen Interdiffusion, Vermischung und Zersetzung der Ausgangskomponenten während des Sinterns bisher zu ASSBs mit geringer Leistung. Diese Nebenreaktionen während der Hochtemperaturbehandlung wurden untersucht, um ein besseres Verständnis dieser Mechanismen zu erlangen und eine bessere Steuerung des Herstellungsprozesses sowie eine einfachere Auswahl von Materialkombinationen zu ermöglichen. Die ersten beiden Teile dieser Arbeit befassen sich mit der thermischen Stabilität des Festkörperelektrolyten LATP in Kombination mit verschiedenen Aktivmaterialien und mit der Validierung einer möglichen Verbesserung des Sinterprozesses durch Flüssigphasensinterung von LATP durch Zugabe von Li3PO4. Im dritten und vierten Teil wurde der Einfluss von Interdiffusion, Durchmischung und Zersetzung auf die elektrochemische Leistung von Dünnschicht-Festkörperbatterien basierend auf dem Aktivmaterial LMO und dem keramischen Festkörperelektrolyten Ga-LLZO untersucht. KW - Elektrochemie KW - all solid-state battery KW - solid-state electrolyte KW - lithium-ion battery KW - electrochemistry KW - Festkörperakkumulator KW - Lithium-Ionen-Akkumulator KW - Festelektrolyt KW - Festkörperbatterie KW - Lithium-Ionen Batterie KW - Festkörperelektrolyt Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-347154 ER - TY - JOUR A1 - Roy, Dipak Kumar A1 - Tröster, Tobias A1 - Fantuzzi, Felipe A1 - Dewhurst, Rian D. A1 - Lenczyk, Carsten A1 - Radacki, Krzysztof A1 - Pranckevicius, Conor A1 - Engels, Bernd A1 - Braunschweig, Holger T1 - Isolation and Reactivity of an Antiaromatic s‐Block Metal Compound JF - Angewandte Chemie International Edition N2 - The concepts of aromaticity and antiaromaticity have a long history, and countless demonstrations of these phenomena have been made with molecules based on elements from the p, d, and f blocks of the periodic table. In contrast, the limited oxidation‐state flexibility of the s‐block metals has long stood in the way of their participation in sophisticated π‐bonding arrangements, and truly antiaromatic systems containing s‐block metals are altogether absent or remain poorly defined. Using spectroscopic, structural, and computational techniques, we present herein the synthesis and authentication of a heterocyclic compound containing the alkaline earth metal beryllium that exhibits significant antiaromaticity, and detail its chemical reduction and Lewis‐base‐coordination chemistry. KW - antiaromaticity KW - aromaticity KW - beryllium KW - heterocycles KW - s-block metals Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224447 VL - 60 IS - 7 SP - 3812 EP - 3819 ER - TY - JOUR A1 - Ries, Wolfgang A1 - Albright, Thomas A1 - Silvestre, Jerome A1 - Bernal, Ivan A1 - Malisch, Wolfgang A1 - Burschka, Christian T1 - Unusual structural features of a siloxane N2 - Crystals of the R, S diastereoisomer of [Cp(CO)\(_2\)-FeSiCH\(_3\)F]\(_2\)O are monoclinic, space group ndc (No. 14), with a = 846.0(3) [836.4(1»), b = 768.0(3) [757.1(1»), c = 1548.5(4) [1522.3(2)] pm, {3 = 97.34(3t [97.47(3t] at 300 K [120 K] with Z = 2. Even at 120 K the Si-O-Si fragment is found to be strictly linear due to crystallographically imposed symmetry. To explain the unusual electron distribution derived from the X-ray data collected, several types of possible disorders are discussed, none of which leads to a satisfying explanation. Retaining the Ci symmetry (linear Si-O-Si fragment in the final model) the important bond lengths are Fe-Si 226.7(1) [226.5(1)] pm, Si-F 160.9(2) [161.8(2)] pm, Si-O 160.3(1) [161.1(1)] pm, Si-C 185.0(3) [185.6(3)] pm. The electronic features of this compound were probed via molecular orbital calculations of the extended Hiickel type. It was found that the lone pairs on the siloxane oxygen were tipped away from cylindrical symmetry. The tipping was directed toward the fluorine substituents on the silicon atoms and away from the CpFe(CO)\(_2\) units. A pertubational approach was utilized to rationalize this effect. KW - Chemie Y1 - 1986 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-31925 ER - TY - JOUR A1 - Riensch, Nicolas Alexander A1 - Swoboda, Lukas A1 - Lik, Artur A1 - Krummenacher, Ivo A1 - Braunschweig, Holger A1 - Helten, Holger T1 - Conjugated Bis(triarylboranes) with Disconnected Conjugation JF - Zeitschrift für anorganische und allgemeine Chemie N2 - A series of methylene-bridged bis(triarylboranes) has been synthesized via two complementary routes using metal-free catalytic Si/B exchange condensation under mild conditions. The title compounds comprise two borane moieties that show effective internal π-conjugation involving the respective boron centers and the adjacent hetaryl groups. Conjugation between both borane units, however, is disrupted by the aliphatic linker. Cyclic voltammetry revealed minimal electronic communication between the boron centers, as evidenced by two closely spaced reduction processes. The UV-vis spectra showed bathochromic shifted absorption bands compared to related monoboranes, which is attributed to the methylene bridge. A further red-shift results upon introduction of methyl or SiMe\(_3\) groups at the terminal thiophene rings. KW - Boron KW - thiophene KW - conjugated oligomers KW - hybrid materials KW - boranes Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-258020 VL - 647 IS - 5 ER - TY - THES A1 - Riensch, Nicolas Alexander T1 - Silicon/Boron Exchange Routes to Novel Inorganic-Organic Hybrid Molecules, Oligomers, Polymers and Macrocycles T1 - Silizium/Bor Austauschrouten zu Neuartigen Anorganisch-Organischen Hybridmolekülen, Oligomeren, Polymeren und Makrozyklen N2 - Industrially used semiconducting materials, building blocks of modern electronics and computer industry, are mostly based on inorganic, crystalline solids, which have the drawback of relatively high production costs. As an alternative, organic pi-conjugated systems show enhanced flexibility and processability as well as the opportunity to obtain light-weight materials. They have emerged as attractive candidates, especially since elements beyond hydrogen and carbon can be used to create pi-conjugated frameworks. In recent years, pi-conjugated oligomers and polymers with tricoordinate boron centers incorporated into the main chain of such organic polymers have attracted considerable attention as the interaction of the vacant p orbital on boron with an adjacent pi system of the chain leads to extended conjugated materials. These materials show intriguing optical and electronic properties and potential applications in organic electronics and optoelectronics (OLEDs, OFETs, photovoltaics) or as sensory materials. In this thesis, a catalytic Si/B exchange reaction protocol is used as a facile and highly effective B-C bond formation method to synthesize organoboron molecules, oligomers, polymers and macrocycles. This reaction is applied to synthesize a series of thienyl- and furylborane based materials. Special focus is on furylborane based materials, which, in general, have been only scarcely explored so far. This is mainly due to synthetic challenges since furan decomposes readily in the presence of light and oxygen. Our mild and highly selective reaction protocol in combination with sufficient kinetic protection of the boron centers gives access to a series of extended organoboranes featuring furylborane units in the main chain. Furthermore, kinetically stabilized furylboranes are established as highly robust and versatile building blocks for pi conjugated materials. The obtained materials reveal remarkable luminescence properties. The scope of potential starting materials was investigated by a catalyst screening, demonstrating that the Si/B exchange reaction can also be performed for less reactive aryldichloroboranes. Furthermore, borazine-based hybrid cyclomatrix microspheres have been synthesized via a Si/B exchange condensation reaction under precipitation polymerization conditions. Finally, synthetic routes to tetrabora- and diboraporphyrinogens were attempted in a multi-step reaction procedure. In the case for tetraboraporphyrinogens, the final macrocyclization reaction under pseudo high-dilution conditions afforded a mixture of macrocycles with different ring sizes. UV-vis and fluorescence spectroscopic analysis indicated significant differences in comparison to their linear congeners. N2 - Industriell eingesetzte Halbleitermaterialien können als Bausteine der modernen Elektronik- und Computerindustrie beschrieben werden und basieren meist auf anorganischen, kristallinen Festkörpern, die relativ hohe Herstellungskosten als Nachteil haben. Als Alternative bieten pi-konjugierte Systeme eine höhere Flexibilität und Verarbeitbarkeit sowie die Möglichkeit, leichte Materialien zu erhalten. Sie haben sich als attraktive Kandidaten erwiesen, zumal auch Elemente jenseits von Wasserstoff und Kohlenstoff zur Herstellung von pi konjugierten Gerüsten verwendet werden können. In den letzten Jahren haben pi-konjugierte Oligomere und Polymere mit dreifach koordinierten Bor-Zentren, die in der Hauptkette solcher organischen Polymere eingebaut sind, große Aufmerksamkeit erregt, da die Wechselwirkung des vakanten p-Orbitals am Bor mit einem benachbarten pi-System der Kette zu ausgedehnten konjugierten Materialien führt. Diese Materialien zeigen faszinierende optische und elektronische Eigenschaften und potenzielle Anwendungen in der organischen Elektronik und Optoelektronik (OLEDs, OFETs, Photovoltaik) oder als Sensormaterialien. In dieser Arbeit wird ein katalytisches Si/B-Austauschreaktionsprotokoll als einfache und hocheffektive Methode zur Bildung von B-C-Bindungen verwendet, um Organobor-Moleküle, Oligomere, Polymere und Makrozyklen zu synthetisieren. Diese Reaktion wird zur Synthese einer Reihe von Materialien auf Thienyl- und Furylboranbasis eingesetzt. Besonderes Augenmerk liegt dabei auf furylboranbasierten Materialien, die im Allgemeinen bisher nur wenig erforscht sind. Dies ist vor allem auf synthetische Herausforderungen zurückzuführen, da Furan in Gegenwart von Licht und Sauerstoff leicht zersetzt wird. Unser mildes und hochselektives Reaktionsprotokoll in Kombination mit einem ausreichenden kinetischen Schutz der Bor-Zentren ermöglicht den Zugang zu einer Reihe von ausgedehnten Organoboranen, die Furylboran-Einheiten in der Hauptkette besitzen. Darüber hinaus werden kinetisch stabilisierte Furylborane als sehr robuste und vielseitige Bausteine für konjugierte Materialien etabliert. Die erhaltenen Materialien weisen bemerkenswerte Lumineszenz-eigenschaften auf. Die Bandbreite möglicher Ausgangsmaterialien wurde durch ein Katalysator-Screening untersucht. Dabei zeigte sich, dass die Si/B-Austauschreaktion auch für weniger reaktive Aryldichlorborane durchgeführt werden kann. Weiterhin wurden Borazin-basierte Hybrid-Cyclomatrix-Mikrokugel über eine Si/B-Austauschkondensationsreaktion unter Fällungspolymerisationsbedingungen synthetisiert. Abschließend wurden Synthesewege zu Tetrabora- und Diboraporphyrinogenen in einem mehrstufigen Reaktionsverfahren untersucht. Im Falle der Tetraboraporphyrinogene ergab die abschließende Makrozyklisierungsreaktion unter Pseudo-Hochverdünnungsbedingungen ein Gemisch von Makrozyklen mit unterschiedlichen Ringgrößen. Die UV-Vis- und fluoreszenzspektroskopische Analyse zeigte signifikante Unterschiede im Vergleich zu ihren linearen Verwandten. KW - Bororganische Verbindungen KW - Konjugierte Polymere KW - Borazin KW - Silizium-Boraustausch KW - Silicon-Boron Exchange KW - Furylborane KW - Organoboron Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-238657 ER - TY - THES A1 - Rieger, Max T1 - Preconcentration with Metal-Organic Frameworks as adsorbents for airborne Explosives and Hazardous Materials - A study using inverse gas chromatography T1 - Anreicherung mit Metal-Organic Frameworks als „Adsorbentien für luftgetragene Explosiv- und Gefahrstoffe - Eine Studie mit inverser Gaschromatographie" N2 - Sensitivity and selectivity remain the central technical requirement for analytical devices, detectors and sensors. Especially in the gas phase, concentrations of threat substances can be very low (e.g. explosives) or have severe effects on health even at low concentrations (e.g. benzene) while it contains many potential interferents. Preconcentration, facilitated by active or passive sampling of air by an adsorbent, followed by thermal desorption, results in these substances being released in a smaller volume, effectively increasing their concentration. Traditionally, a wide range of adsorbents, such as active carbons or porous polymers, are used for preconcentration. However, many adsorbents either show chemical reactions due to active surfaces, serious water retention or high background emission due to thermal instability. Metal-organic frameworks (MOFs) are a hybrid substance class, composed inorganic and organic building blocks, being a special case of coordination polymers containing pores. They can be tailored for specific applications such as gas storage, separation, catalysis, sensors or drug delivery. This thesis is focused on investigating MOFs for their use in thermal preconcentration for airborne detection systems. A pre-screening method for MOF-adsorbate interactions was developed and applied, namely inverse gas chromatography (iGC). Using this pulse chromatographic method, the interaction of MOFs and molecules from the class of explosives and volatile organic compounds was studied at different temperatures and compared to thermal desorption results. In the first part, it is shown that archetype MOFs (HKUST-1, MIL-53 and Fe-BTC) outperformed the state-of-the-art polymeric adsorbent Tenax® TA in nitromethane preconcentration for a 1000 (later 1) ppm nitromethane source. For HKUST-1, a factor of more than 2000 per g of adsorbent was achieved, about 100 times higher than for Tenax. Thereby, a nitromethane concentration of 1 ppb could be increased to 2 ppm. High enrichment is addressed to the specific interaction of the nitro group as by iGC, which was determined by comparing nitromethane’s free enthalpy of adsorption with the respective saturated alkane. Also, HKUST-1 shows a similar mode of sorption (enthalpy-entropy compensation) for nitro and saturated alkanes. In the second part, benzene of 1 ppm of concentration was enriched with a similar setup, using 2nd generation MOFs, primarily UiO-66 and UiO-67, under dry and humid (50 %rH) conditions using constant sampling times. Not any MOF within the study did surpass the polymeric Tenax in benzene preconcentration. This is most certainly due to low sampling times – while Tenax may be highly saturated after 600 s, MOFs are not. For regular UiO-66, four differently synthesized samples showed a strongly varying behavior for dry and humid enrichment which cannot be completely explained. iGC investigations with regular alkanes and BTEX compounds revealed that confinement factors and dispersive surface energy were different for all UiO-66 samples. Using physicochemical parameters from iGC, no unified hypothesis explaining all variances could be developed. Altogether, it was shown that MOFs can replace or add to state-of-the-art adsorbents for the enrichment of specific analytes with preconcentration being a universal sensitivity-boosting concept for detectors and sensors. Especially with iGC as a powerful screening tool, most suitable MOFs for the respective target analyte can be evaluated. iGC can be used for determining “single point” retention volumes, which translate into partition coefficients for a specific MOF × analyte × temperature combination. N2 - Empfindlichkeit und Selektivität bleiben die zentralen technischen Anforderungen an analytische Geräte, Detektoren und Sensoren. Speziell in der Gasphase können die Konzentrationen von Gefahrstoffen sehr niedrig sein (z. B. Explosivstoffe) oder bereits bei niedrigen Konzentrationen schädigende Auswirkungen auf die Gesundheit aufweisen (z. B. Benzol) während sie viele potenzielle Interferenzien enthält. Präkonzentration, die durch aktives oder passives Sampling von Luft durch ein Adsorbens, gefolgt von einer Thermodesorption realisiert wird, setzt diese Substanzen effektiv in einem kleineren Volumen frei, was zu einer Erhöhung der Konzentration führt. Üblicherweise wird hierfür eine breite Auswahl an Adsorbentien wie Aktivkohlen oder poröse Polymere verwendet. Jedoch weisen viele Adsorbentien entweder chemische Reaktionen wegen aktiver Oberflächen, starke Wasserretention oder hohe Hintergrundemission wegen thermischer Instabilität auf. Metal-organic frameworks (MOFs) sind eine hybride Substanzklasse, ein Spezialfall der porösen Koordinationspolymere, die aus anorganischen und organischen Baugruppen aufgebaut sind. Sie können für spezifische Anwendungen wie Gasspeicherung, Trennung, Katalyse, Sensorik oder Wirkstofftransport maßgeschneidert werden. Diese Arbeit befasst sich hauptsächlich mit der Untersuchung von MOFs bei der thermischen Anreicherung für luftgetragene Detektionssysteme. Eine Methode zur schnellen Untersuchung von MOF-Analyt Interaktionen wurde entwickelt und angewendet, die inverse Gaschromatographie (iGC). Mit dieser pulschromatographischen Methode wurde die Interaktion von MOFs und Molekülen aus der Klasse der Explosivstoffe sowie Klasse der flüchtigen organischen Verbindungen (VOCs) in der Gasphase bei verschiedenen Temperaturen untersucht und mit Thermodesorptionsmessungen verglichen. Im ersten Teil der Arbeit würde gezeigt das Modell-MOFs (HKUST-1, MIL-53 und Fe-BTC) den polymeren Standard Tenax® TA beim Anreichern von Nitromethan an einer 1000 (später 1) ppm Nitromethan Quelle übertrafen. Im Fall von HKUST-1 konnte ein Faktor von 2000 pro Gramm erreicht werden, etwa 100-fach höher als für Tenax. Auf diese Weise könnte eine Nitromethan Konzentration von 1 ppb auf 2 ppm erhöht werden. Diese hohen Anreicherungsfaktoren entstammen vermutlich der hohen spezifischen Wechselwirkung der Nitrogruppe mit den MOFs. Diese wurden durch iGC beim Vergleich von Nitromethans freier Adsorptionsenthalpie mit dem entsprechenden gesättigten Alkan ermittelt. HKUST-1 weist auch einen ähnlichen Adsorptionsmodus (Enthalpie-Entropie Kompensation) für Nitro- und gesättigte Alkane auf. Im zweiten Teil der Arbeit wurde die Anreicherung von 1 ppm Benzol, mit einem ähnlichen Aufbau und anderen MOFs, hauptsächlich UiO-66 und UiO-67, unter trockenen und feuchten (50 %rF) Bedingungen bei konstanten Samplingzeiten, untersucht. Hierbei konnte kein MOF das polymere Tenax beim Anreichern von Benzol übertreffen. Dies liegt vermutlich an den niedrigen Samplingzeiten – während Tenax nach 600 s bereits stark gesättigt ist, gilt dies nicht für MOFs. Im Fall von UiO-66 zeigten vier Proben unterschiedlicher Herkunft ein stark unterschiedliches Verhalten bei trockener und feuchter Anreicherung welches nicht vollständig erklärt werden kann. iGC Untersuchungen mit gesättigten Alkanen und BTEX-Verbindungen konnten aufzeigen, dass räumliche Beschränktheitsfaktoren und dispersive Oberflächenenergien für alle vier Proben unterschiedlich waren. Mit physikochemischen Parametern aus iGC-Messungen konnte jedoch keine einheitliche Hypothese zum Unterscheiden der Proben entwickelt werden. Insgesamt konnte gezeigt werden, dass MOFs bestehende Adsorbens-Standards zum Anreichern von bestimmten Analyten ersetzen oder erweitern können, wobei Präkonzentration ein Konzept ist, welches universell die Empfindlichkeit eines Detektors oder Sensors steigern kann. Insbesondere mit iGC als mächtiges Werkzeug zur Vorselektion können passende MOFs für die entsprechenden Zielanalyten evaluiert werden. Ebenso kann iGC auch zur Bestimmung von Einzelpunkt Retentionsvolumen, welche Verteilungskoeffizienten für eine bestimmte MOF × Analyt × Temperatur Kombination entsprechen, genutzt werden. KW - Metallorganisches Netzwerk KW - MOF KW - Gas chromatography KW - iGC KW - Explosives KW - Preconcentration KW - Explosivstoff KW - Inverse Gaschromatographie Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177750 ER - TY - THES A1 - Ricker, Robert T1 - Synthesis, group 10 metal-catalyzed cyclization reactions and hydroboration of polyynes T1 - Synthese, Gruppe 10 metallkatalysierte Cyclisierungsreaktionen und Hydroborierung von Polyinen N2 - Bisdiynes undergo Pd(0)-catalyzed cyclization, forming azulene and naphthalene products. When dibenzylideneacetone is present in the reaction, it undergoes a [2+2+2] cyclization with the bisdiyne, forming cyclohexadiene derivatives. Ni(0) catalyzes the [2+2+2] cycloaddition of diynes with tolanes towards alkynylated o-terphenyl derivatives. The D-A substituted products are solvatochromic, fluorescent dyes with high quantum yields and short lifetimes. Bis-triarylborane tetrayne dyes were synthesized in both neutral and tetracationic forms, as potential DNA/RNA sensor. Both molecules are weakly fluorescent in solution and exhibit characteristic alkyne absorptions in the Raman spectra. Tributyl phosphine catalyzes the trans-hydroboration of 1,3-butadiynes with HBpin. We confirmed experimentally via NMR and HRMS experiments, that phosphine attack on the diyne is a key step in the catalytic cycle. N2 - Bisdiyne gehen eine Pd(0)-katalysierte Zyklisierung ein, bei der Azulen- und Naphthalinprodukte entstehen. Wenn Dibenzylidenaceton in der Reaktion vorhanden ist, kommt es zu einer [2+2+2]-Cyclisierung mit dem Bisdiin, wobei Cyclohexadien-Derivate entstehen. Ni(0) katalysiert die [2+2+2]-Cycloaddition von Diinen mit Tolanen zu alkinilierten o-Terphenylderivaten. Die D-A-substituierten Produkte sind solvatochrome, fluoreszierende Farbstoffe mit hohen Quantenausbeuten und kurzen Lebensdauern. Bis-Triarylboran-Tetrain-Farbstoffe wurden sowohl in neutraler als auch in tetrakationischer Form synthetisiert, die als DNA/RNA-Sensoren in Frage kommen. Beide Moleküle sind in Lösung schwach fluoreszierend und zeigen charakteristische Alkin-Absorptionen in den Raman-Spektren. Tributylphosphin katalysiert die trans-Hydroboration von 1,3-Butadinen mit HBpin. Mittels NMR- und HRMS-Experimenten haben wir experimentell bestätigt, dass der Phosphin-Angriff auf das Diin ein Schlüsselschritt im katalytischen Zyklus ist. KW - Polyine KW - Diine KW - Fluoreszierender Stoff KW - Übergangsmetall KW - group 10 element KW - cyclization reactions KW - fluorescence Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286801 ER - TY - JOUR A1 - Rettinger, Klaus A1 - Burschka, Christian A1 - Scheeben, Peter A1 - Fuchs, Heike A1 - Mosandl, Armin T1 - Chiral 2-alkylbranched acids, esters and alcohols. Preparation and stereospecific flavour evaluation N2 - Racemic 2-alkylbranched acids are transformed to diastereomeric derivatives with (S)-2-hydroxy-3-phenylpropionic acid-N-methylamide or (S)-(-)-l-phenylethylamine and separated by liquid chromatography to pure diastereoisomers, which are subsequently hydrolyzed to yield optically pure acids. Enantiomeric alcohols are generated by LiAlH4-reduction of the corresponding acids, esters are synthesized by different methods. The odour impression of the enantiomeric compounds is investigated. KW - Säure KW - Ester KW - Alkohol KW - 2-alkylbranched acids KW - esters and alcohols KW - flavour substances KW - chirality and odour Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-31898 ER - TY - JOUR A1 - Rettenmayr, N. M. A1 - Rodrigues de Miranda, J. F. A1 - Rijntjes, N. V. M. A1 - Russel, F. G. M. A1 - van Ginneken, C. A. M. A1 - Strohmann, C. A1 - Tacke, Reinhold A1 - Lambrecht, G. A1 - Mutschler, E. T1 - Pharmacokinetic properties of the antimuscarinic drug [\(^3\)H]-hexahydro-sila-difenidol in the rat N2 - The pharmacokinetics of tritiated hexahydrosila- difenidol ([\(^3\)H]-HHSiD) were examined in rats. Furthermore, the distribution of radioactivity was studied by means of whole body autoradiography. After i. v. administration of 2.9 mg/kg HHSiD plus [\(^3\)H]-HHSiD to anaesthetized rats bearing a catheter implanted in the ductus choledochus and receiving a mannitol infusion, HHSiD was rapidly distributed and metabolized. Only 5% ofthe radioactivity was recovered in blood after 23 s and 0.4% after 2.5 h. 64% of the plasma radioactivity could be extracted with hexane from the samples taken 23 s after administration. 52% of the radioactivity was eliminated within 2.5 h, 13% by urinary and 39% by biliary excretion. Following oral administration of 8.6 mg/kg HHSiD plus [\(^3\)H]-HHSiD there was an absorption of approximately one fourth of the administered radioactivity within 4 h. By means of whole body autoradiography (i. v. injection) as well as by tissue distribution measurement the highest Ievels of radioactivity were found in bile, urine, lung, kidney, adrenals, liver and .pancreas. Thus, after i. v. administration to rats HHSiD is rather quickly distributed, metabolized and excreted. This explains its low antimuscarinic potency in vivo. KW - Anorganische Chemie KW - Pharmacokinetics KW - [3H]-Hexahydro-siladifenidol KW - Sila-drug KW - Rat KW - Autoradiography Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64022 ER - TY - THES A1 - Remenyi, Christian T1 - Density Functional Studies on EPR Parameters and Spin-Density Distributions of Transition Metal Complexes T1 - Dichtefunktionalstudien zu EPR-Parametern und Spindichteverteilungen von Übergangsmetallkomplexen N2 - In dieser Arbeit wurden EPR-Parameter und Spindichteverteilungen von Übergangsmetallkomplexen mit Hilfe der Dichtefunktionaltheorie (DFT) berechnet. Um das Potential der DFT bei der Beschreibung solcher Systeme zu zeigen, wurden mehrere Validierungsstudien durchgeführt, die in den Kapiteln 3-5 vorgestellt werden. Die Kapitel 6-8 beschäftigen sich dagegen eher mit konkreten chemischen Fragestellungen, die einige biologisch relevante Übergangsmetallkomplexe betreffen. N2 - In this work we utilized Density Functional Theory to calculate EPR parameters and spin-density distributions of several transition metal complexes. To demonstrate the performance of our theoretical approach several validation studies were performed (Chapters 3-5). In contrast, the last three chapters of the thesis deal with specific chemical problems regarding several classes of biologically relevant transition metal complexes. KW - Dichtefunktionalformalismus KW - Elektronenspinresonanz KW - Spindichte KW - Übergangsmetall KW - DFT KW - EPR KW - Spindichte KW - g-Tensor KW - Hyperfeinkopplungstensor KW - DFT KW - EPR KW - Spin density KW - g-tensor KW - HFC-tensor Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-19848 ER -