TY - JOUR A1 - Lambert, Christoph A1 - Kaupp, Martin A1 - Schleyer, Paul von Rague T1 - “Inverted” Sodium-Lithium Electronegativity: Polarity and Metalation Energies of Organic and Inorganic Alkali-Metal Compounds N2 - No abstract available KW - Anorganische Chemie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60054 ER - TY - JOUR A1 - Braunschweig, Holger A1 - Dewhurst, Rian D. A1 - Schwab, Katrin A1 - Wagner, Katharina T1 - {N ',N ''-Bis[2,6-bis(1-methylethyl)phenyl]-N,N-dimethylguanidinato-kappa N-2 ',N ''}dibromidoborane N2 - In the molecular structure of the title compound, C27H40N3BBr2, the B atom is connected to two bromide substituents and a guanidinate scaffold, forming a four– membered ring. An aryl group is connected to each N atom in the ring that contains two isopropyl groups in positions 2 and 6. KW - Anorganische Chemie Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-67622 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 - 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 - 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 - Ramler, Jacqueline A1 - Krummenacher, Ivo A1 - Lichtenberg, Crispin T1 - Well‐Defined, Molecular Bismuth Compounds: Catalysts in Photochemically Induced Radical Dehydrocoupling Reactions JF - Chemistry – A European Journal N2 - A series of diorgano(bismuth)chalcogenides, [Bi(di‐aryl)EPh], has been synthesised and fully characterised (E=S, Se, Te). These molecular bismuth complexes have been exploited in homogeneous photochemically‐induced radical catalysis, using the coupling of silanes with TEMPO as a model reaction (TEMPO=(tetramethyl‐piperidin‐1‐yl)‐oxyl). Their catalytic properties are complementary or superior to those of known catalysts for these coupling reactions. Catalytically competent intermediates of the reaction have been identified. Applied analytical techniques include NMR, UV/Vis, and EPR spectroscopy, mass spectrometry, single‐crystal X‐ray diffraction analysis, and (TD)‐DFT calculations. KW - bismuth KW - chalcogens KW - dehydrocoupling KW - photocatalysis KW - radical reactions Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224577 VL - 26 IS - 64 SP - 14551 EP - 14555 ER - TY - THES A1 - Fritze, Lars T1 - Ways to Novel Inorganic-Organic Hybrid Materials Applying New B–C Bond Formation Strategies T1 - Wege zu neuartigen anorganisch-organischen Hybridmaterialien durch Anwendung von neuen B–C Kupplungsstrategien N2 - π-Conjugated oligomers and polymers with tricoordinate boron centers incorporated into the main chain have attracted considerable attention as the interaction of the vacant p orbital on boron with an adjacent π system of the chain leads to conjugated materials with intriguing optical and electronic properties. This enables applicability in organic electronics and optoelectronics (OLEDs, OFETs, photovoltaics) or as sensory materials. The potential of our B–C coupling protocol using metal-free catalytic Si/B exchange condensation is demonstrated by the synthesis of a series of π-conjugated monodisperse (het)aryl oligoboranes. Variation of the (het)aryl moieties allowed for tunability of the optoelectronic properties of the materials. Additionally, catalytic C–C cross-coupling strategies were applied to synthesize oligofuryl-based mono- and bisboranes, as well as polymers. These studies led to very robust and highly emissive compounds (f up to 97 %), which allow for tuning of their emission color from blue to orange. Furthermore, this work includes investigations of reaction routes to a kinetically stabilized tetraoxaporphyrinogen. Being a key aspect of this work, a full investigation of the mechanism of the catalytic Si/B exchange was carried out. Additionally, this work presents the use of borenium cations to perform B–C coupling via intermolecular electrophilic borylation. Similar to the Si/B exchange, this route is capable of giving access to diaryl(bromo)boranes. N2 - π-konjugierte Oligomere und Polymere mit dreifach koordinierten Bor-Zentren, die in die Hauptkette eingebaut sind, haben große Aufmerksamkeit erregt, da die Wechselwirkung des vakanten p-Orbitals am Bor mit dem π-System der Kette zu konjugierten Materialien mit faszinierenden optischen und elektronischen Eigenschaften führt. Dies ermöglicht die Anwendbarkeit in organischer Elektronik und Optoelektronik (OLEDs, OFETs, Photovoltaik) oder als sensorische Materialien. Das Potenzial unseres B–C-Kupplungsprotokolls unter Verwendung der metallfreien katalytischen Si/B-Austauschskondensation wird durch die Synthese einer Reihe von π-konjugierten monodispersen (Het)aryl-Oligoboranen demonstriert. Durch Variation der (Het)aryl-Anteile konnten die optoelektronischen Eigenschaften der Materialien eingestellt werden. Zusätzlich wurden katalytische C–C-Kreuzkupplungsstrategien angewandt, um Oligofuryl-basierte Mono- und Bisborane sowie Polymere zu synthetisieren. Diese Untersuchungen führten zu sehr robusten und stark emittierenden Verbindungen (f bis zu 97 %), die die Einstellung ihrer Emissionsfarbe von blau bis orange ermöglichen. Weiterhin beinhaltet diese Arbeit Untersuchungen von Reaktionswegen zu einem kinetisch stabilisierten Tetraoxaporphyrinogen. Als ein Schlüsselaspekt dieser Arbeit wurde eine vollständige Untersuchung des Mechanismus des katalytischen Si/B-Austauschs durchgeführt. Zusätzlich wird in dieser Arbeit die Verwendung von Borenium-Kationen zur Durchführung von B–C-Kupplungen über intermolekulare elektrophile Borylierungen vorgestellt. Ähnlich wie beim Si/B-Austausch kann dieser Weg genutzt werden, um Zugang zu Diaryl(bromo)boranen zu geben. KW - Konjugierte Polymere KW - Borverbindungen KW - Kation KW - Furanderivate KW - Silizium-Bor-Austausch KW - B–C-Kupplung KW - C–C-Kupplung KW - Furylborane KW - C–H Aktivierung KW - Silicon-Boron exchange KW - B–C coupling KW - C–C coupling KW - Furylboranes KW - C–H activation Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-242173 ER - TY - JOUR A1 - Mansour, Ahmed M. A1 - Steiger, Christoph A1 - Nagel, Christoph A1 - Schatzschneider, Ulrich T1 - Wavelength‐dependent control of the CO release kinetics of manganese(I) tricarbonyl PhotoCORMs with benzimidazole coligands JF - European Journal of Inorganic Chemistry N2 - A series of photoactivatable CO‐releasing molecules (PhotoCORMs) was prepared from manganese pentacarbonyl bromide and 1H‐benzimidazol‐2‐ylmethyl‐(N‐phenyl)amine ligands (L) bearing different electron‐donating and electron‐withdrawing groups R = H, 4‐CH\(_3\), 4‐OCH\(_3\), 4‐Cl, 4‐NO\(_2\), 2‐, 3‐, and 4‐COOCH\(_3\) on the phenyl substituent to give octahedral manganese(I) complexes of the general formula [MnBr(CO)\(_3\)(L)]. Aerated DMSO solutions of the compounds are stable in the dark for 16 h with no CO release. However, the compounds rapidly release CO upon illumination at 412–525 nm, depending on the substitution pattern. Its influence on the photophysical and photochemical properties was systematically explored using UV/Vis spectroscopy and CO release measurements with a commercial gas sensor system. In the nitro‐substituted compound, the electronically excited state switched from benzimidazole‐ to phenyl‐centered, leading to a markedly different photochemical behavior of this visible‐light activated PhotoCORM. KW - CO‐releasing molecules (CORMs) KW - Manganese Carbonyl ligands KW - Benzimidazole KW - TDDFT Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218362 VL - 2019 IS - 42 ER - TY - THES A1 - Ramler, Jacqueline T1 - Versatile Use of Neutral and Cationic Diorgano Bismuth Compounds: Ligation of Transition Metals, Lewis Acidity, Low Valent Species and Catalysis T1 - Vielseitiger Einsatz von Diorganobismutverbindungen: Liganden von Übergangsmetallen, Lewis-Azidität, Niedervalente Spezies und Katalyse N2 - In der vorliegenden Arbeit wurden Diorganobismut-Spezies hinsichtlich ihrer Eigenschaften als Liganden in Übergangsmetallkomplexen, ihrer Lewis-Azidität, ihrer Eignung als Katalysatoren und die Generierung niedervalenter Spezies untersucht. N2 - In this work, neutral and cationic diorganobismuth species have been studied, focusing on the rationalization of their Lewis acidity, their use as ligands in complexes of main group and transition metals and the identification of active catalysts. KW - Bismut KW - Lewis-Säure KW - Katalyse KW - Übergangsmetallkomplexe KW - Lewis-Azidität KW - Diorganobismut-Spezies KW - Niedervalente Spezies Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-240547 ER - TY - JOUR A1 - Plakhutin, B. N. A1 - Zhidomirov, G. M. A1 - Arbuznikov, Alexei V. T1 - Vector coupling coefficients for calculations of transition-metal atoms and ions by the SCF coupling operator method N2 - No abstract available Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-30702 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 - 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 - JOUR A1 - Arrowsmith, Merle A1 - Böhnke, Julian A1 - Braunschweig, Holger A1 - Celik, Mehmet A1 - Dellermann, Theresa A1 - Hammond, Kai T1 - Uncatalyzed Hydrogenation of First-Row Main Group Multiple Bonds JF - Chemistry, A European Journal N2 - Room temperature hydrogenation of an SIDep-stabilized diboryne (SIDep = 1,3-bis(diethylphenyl)-4,5-dihydroimidazol-2-ylidene) and a CAAC-supported diboracumulene (CAAC = 1-(2,6- diisopropylphenyl)-3,3,5,5-tetramethylpyrrolidin-2-ylidene) provided the first selective route to the corresponding 1,2-dihydrodiborenes. DFT calculations showed an overall exothermic (ΔG = 19.4 kcal mol\(^{-1}\) two-step asynchronous H\(_2\) addition mechanism proceeding via a bridging hydride. KW - diborenes KW - carbenes KW - hydrogenation KW - main-group chemistry KW - reaction mechanism KW - Diborane Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-139364 N1 - This is the peer reviewed version of the following article: Chemistry, A European Journal, 2016, 22, 17169–17172, which has been published in final form at 10.1002/chem.201604094. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving. VL - 22 IS - 48 SP - 17169 EP - 17172 ER - TY - JOUR A1 - Ramler, Jacqueline A1 - Schwarzmann, Johannes A1 - Stoy, Andreas A1 - Lichtenberg, Crispin T1 - Two Faces of the Bi−O Bond: Photochemically and Thermally Induced Dehydrocoupling for Si−O Bond Formation JF - European Journal of Inorganic Chemistry N2 - The diorgano(bismuth)alcoholate [Bi((C\(_{6}\)H\(_{4}\)CH\(_{2}\))\(_{2}\)S)OPh] (1-OPh) has been synthesized and fully characterized. Stoichiometric reactions, UV/Vis spectroscopy, and (TD-)DFT calculations suggest its susceptibility to homolytic and heterolytic Bi−O bond cleavage under given reaction conditions. Using the dehydrocoupling of silanes with either TEMPO or phenol as model reactions, the catalytic competency of 1-OPh has been investigated (TEMPO=(tetramethyl-piperidin-1-yl)-oxyl). Different reaction pathways can deliberately be addressed by applying photochemical or thermal reaction conditions and by choosing radical or closed-shell substrates (TEMPO vs. phenol). Applied analytical techniques include NMR, UV/Vis, and EPR spectroscopy, mass spectrometry, single-crystal X-ray diffraction analysis, and (TD)-DFT calculations. KW - Bismuth KW - dehydrocoupling KW - radical reactions KW - chalcogens KW - catalysis Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-257428 VL - 2022 IS - 7 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 - 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 - Brammer, Jan C. A1 - Blanke, Gerd A1 - Kellner, Claudia A1 - Hoffmann, Alexander A1 - Herres-Pawlis, Sonja A1 - Schatzschneider, Ulrich T1 - TUCAN: A molecular identifier and descriptor applicable to the whole periodic table from hydrogen to oganesson JF - Journal of Cheminformatics N2 - TUCAN is a canonical serialization format that is independent of domain-specific concepts of structure and bonding. The atomic number is the only chemical feature that is used to derive the TUCAN format. Other than that, the format is solely based on the molecular topology. Validation is reported on a manually curated test set of molecules as well as a library of non-chemical graphs. The serialization procedure generates a canonical “tuple-style” output which is bidirectional, allowing the TUCAN string to serve as both identifier and descriptor. Use of the Python NetworkX graph library facilitated a compact and easily extensible implementation. KW - software library KW - cheminformatics KW - molecular representation KW - chemical identifier KW - canonicalization KW - molecule isomorphism KW - line notations KW - molecular graphs KW - python Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-299730 SN - 1758-2946 VL - 14 IS - 1 ER - TY - JOUR A1 - Föhrenbacher, Steffen A. A1 - Krahfuss, Mirjam J. A1 - Zapf, Ludwig A1 - Friedrich, Alexandra A1 - Ignat'ev, Nikolai V. A1 - Finze, Maik A1 - Radius, Udo T1 - Tris(pentafluoroethyl)difluorophosphorane: a versatile fluoride acceptor for transition metal chemistry JF - Chemistry Europe N2 - Fluoride abstraction from different types of transition metal fluoride complexes [L\(_n\)MF] (M=Ti, Ni, Cu) by the Lewis acid tris(pentafluoroethyl)difluorophosphorane (C\(_2\)F\(_5\))\(_3\)PF\(_2\) to yield cationic transition metal complexes with the tris(pentafluoroethyl)trifluorophosphate counterion (FAP anion, [(C\(_2\)F\(_5\))\(_3\)PF\(_3\)]\(^-\)) is reported. (C\(_2\)F\(_5\))\(_3\)PF\(_2\) reacted with trans-[Ni(iPr\(_2\)Im)\(_2\)(Ar\(^F\))F] (iPr2Im=1,3-diisopropylimidazolin-2-ylidene; Ar\(^F\)=C\(_6\)F\(_5\), 1 a; 4-CF\(_3\)-C\(_6\)F\(_4\), 1 b; 4-C\(_6\)F\(_5\)-C\(_6\)F\(_4\), 1 c) through fluoride transfer to form the complex salts trans-[Ni(iPr\(_2\)Im)\(_2\)(solv)(Ar\(^F\))]FAP (2 a-c[solv]; solv=Et\(_2\)O, CH\(_2\)Cl\(_2\), THF) depending on the reaction medium. In the presence of stronger Lewis bases such as carbenes or PPh\(_3\), solvent coordination was suppressed and the complexes trans-[Ni(iPr\(_2\)Im)\(_2\)(PPh\(_3\))(C\(_6\)F\(_5\))]FAP (trans-2 a[PPh\(_3\)]) and cis-[Ni(iPr\(_2\)Im)\(_2\)(Dipp\(_2\)Im)(C\(_6\)F\(_5\))]FAP (cis-2 a[Dipp\(_2\)Im]) (Dipp\(_2\)Im=1,3-bis(2,6-diisopropylphenyl)imidazolin-2-ylidene) were isolated. Fluoride abstraction from [(Dipp\(_2\)Im)CuF] (3) in CH\(_2\)Cl\(_2\) or 1,2-difluorobenzene led to the isolation of [{(Dipp\(_2\)Im)Cu}\(_2\)]\(^2\)\(^+\)2 FAP\(^-\) (4). Subsequent reaction of 4 with PPh\(_3\) and different carbenes resulted in the complexes [(Dipp\(_2\)Im)Cu(LB)]FAP (5 a–e, LB=Lewis base). In the presence of C6Me6, fluoride transfer afforded [(Dipp\(_2\)Im)Cu(C\(_6\)Me\(_6\))]FAP (5 f), which serves as a source of [(Dipp\(_2\)Im)Cu)]\(^+\). Fluoride abstraction of [Cp\(_2\)TiF\(_2\)] (7) resulted in the formation of dinuclear [FCp\(_2\)Ti(μ-F)TiCp\(_2\)F]FAP (8) (Cp=η\(^5\)-C\(_5\)H\(_5\)) with one terminal fluoride ligand at each titanium atom and an additional bridging fluoride ligand. KW - inorganic chemistry KW - copper KW - nickel KW - phosphoranes KW - titanium KW - weakly coordinating anions Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256665 VL - 27 IS - 10 ER - TY - JOUR A1 - Föhrenbacher, Steffen A. A1 - Zeh, Vivien A1 - Krahfuss, Mirjam J. A1 - Ignat'ev, Nikolai V. A1 - Finze, Maik A1 - Radius, Udo T1 - Tris(pentafluoroethyl)difluorophosphorane and N‐Heterocyclic Carbenes: Adduct Formation and Frustrated Lewis Pair Reactivity JF - European Journal of Inorganic Chemistry N2 - The synthesis and characterization of Lewis acid/base adducts between tris(pentafluoroethyl)difluorophosphorane PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\) and selected N-heterocyclic carbenes (NHCs) R\(_{2}\)Im (1,3-di-organyl-imidazolin-2-ylidene) and phosphines are reported. For NHCs with small alkyl substituents at nitrogen (R=Me, nPr, iPr) the adducts NHC ⋅ PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\) (2 a–h) were isolated. The reaction with the sterically more demanding NHCs Dipp\(_{2}\)Im (1,3-bis-(2,6-di-iso-propylphenyl)-imidazolin-2-ylidene) (1 i) and tBu\(_{2}\)Im (1,3-di-tert-butyl-imidazolin-2-ylidene) (1 j) afforded the aNHC adducts 3 i and 3 j (a denotes “abnormal” NHC coordination via a backbone carbon atom). The use of tBuMeIm (1-tert-butyl-3-methyl-imidazolin-2-ylidene) (1 m) led to partial decomposition of the NHC and formation of the salt [tBuMeIm−H][MeIm ⋅ PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\)] (4 m). The phosphorane PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\) forms adducts with PMe\(_{3}\) but does not react with PPh\(_{3}\) or PCy\(_{3}\). The mer-cis isomer of literature-known Me\(_{3}\)P ⋅ PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\) (5 a) was structurally characterized. Mixtures of the phosphorane PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\) and the sterically encumbered NHCs tBu\(_{2}\)Im, Dipp\(_{2}\)Im, and Dipp\(_{2}\)Im\(^{H2}\) (1,3-bis-(2,6-di-iso-propylphenyl)-imidazolidin-2-ylidene) (1 k) showed properties of FLPs (Frustrated Lewis Pairs) as these mixtures were able to open the ring of THF (tetrahydrofuran) to yield NHC−(CH\(_{2}\))\(_{4}\)O−PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\) 6 i–k. Furthermore, the deprotonation of the weak C−H acids CH\(_{3}\)CN, acetone, and ethyl acetate was achieved, which led to the formation of the corresponding imidazolium salts and the phosphates [PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\)(CH\(_{2}\)CN)]\(^{-}\) (7), [PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\)(OC(=CH\(_{2}\))CH\(_{3}\))]\(^{-}\) (8) and [PF\(_{2}\)(C\(_{2}\)F\(_{5}\))\(_{3}\)(CH\(_{2}\)CO\(_{2}\)Et)]\(^{-}\) (9). KW - C-H activation KW - N-Heterocyclic Carbene Adducts KW - N-Heterocyclic Carbenes KW - Frustrated Lewis Pairs KW - Fluoro(perfluoroalkyl) phosphoranes Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-257386 VL - 2021 IS - 20 ER - TY - JOUR A1 - Finze, Maik A1 - Reiss, Guido J. T1 - Trimethyl­sulfonium 1-amino-6-fluoro-2,3,4,5,7,8,9,10,11,12-decaiodo-1-carba-closo-dodeca­borate N2 - no abstract available KW - Chemie KW - single-crystal X-ray study KW - T = 100 K KW - wR factor = 0.052 KW - data-to-parameter ratio = 20.8 Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-75397 ER - TY - JOUR A1 - Braunschweig, Holger A1 - Ewing, William C. A1 - Ghosh, Sundargopal A1 - Kramer, Thomas A1 - Mattock, James D. A1 - Östreicher, Sebastian A1 - Vargas, Alfredo A1 - Werner, Christine T1 - Trimetallaborides as starting points for the syntheses of large metal-rich molecular borides and clusters JF - Chemical Science N2 - Treatment of an anionic dimanganaborylene complex ([{Cp(CO)\(_2\)Mn}\(_2\)B]\(^-\)) with coinage metal cations stabilized by a very weakly coordinating Lewis base (SMe\(_2\)) led to the coordination of the incoming metal and subsequent displacement of dimethylsulfide in the formation of hexametalladiborides featuring planar four-membered M\(_2\)B\(_2\) cores (M = Cu, Au) comparable to transition metal clusters constructed around four-membered rings composed solely of coinage metals. The analogies between compounds consisting of B\(_2\)M\(_2\) units and M\(_4\) (M = Cu, Au) units speak to the often overlooked metalloid nature of boron. Treatment of one of these compounds (M = Cu) with a Lewis-basic metal fragment (Pt(PCy\(_3\))\(_2\)) led to the formation of a tetrametallaboride featuring two manganese, one copper and one platinum atom, all bound to boron in a geometry not yet seen for this kind of compound. Computational examination suggests that this geometry is the result of d\(^{10}\)-d\(^{10}\) dispersion interactions between the copper and platinum fragments. KW - anionic dimetalloborylene complexes KW - trimetallaborides KW - tetrametallaborides KW - Boron KW - metallaboranes KW - crystal structure KW - metal borylene complexes Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-191511 VL - 7 IS - 1 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 - Ban, Željka A1 - Karačić, Zrinka A1 - Tomić, Sanja A1 - Amini, Hashem A1 - Marder, Todd B. A1 - Piantanida, Ivo T1 - Triarylborane dyes as a novel non-covalent and non-inhibitive fluorimetric markers for DPP III enzyme JF - Molecules N2 - Novel dyes were prepared by simple “click CuAAC” attachment of a triarylborane–alkyne to the azide side chain of an amino acid yielding triarylborane dye 1 which was conjugated with pyrene (dye 2) forming a triarylborane–pyrene FRET pair. In contrast to previous cationic triarylboranes, the novel neutral dyes interact only with proteins, while their affinity to DNA/RNA is completely abolished. Both the reference triarylborane amino acid and triarylborane–pyrene conjugate bind to BSA and the hDPP III enzyme with high affinities, exhibiting a strong (up to 100-fold) fluorescence increase, whereby the triarylborane–pyrene conjugate additionally retained FRET upon binding to the protein. Furthermore, the triarylborane dyes, upon binding to the hDPP III enzyme, did not impair its enzymatic activity under a wide range of experimental conditions, thus being the first non-covalent fluorimetric markers for hDPP III, also applicable during enzymatic reactions with hDPP III substrates. KW - triarylborane KW - pyrene KW - click CuAAC synthesis KW - DPP III enzyme KW - BSA KW - fluorescence Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-245046 SN - 1420-3049 VL - 26 IS - 16 ER - TY - INPR A1 - Hermann, Alexander A1 - Arrowsmith, Merle A1 - Trujillo-Gonzalez, Daniel A1 - Jiménez-Halla, J. Oscar C. A1 - Vargas, Alfredo A1 - Braunschweig, Holger T1 - Trapping of a Borirane Intermediate in the Reductive Coupling of an Arylborane to a Diborene T2 - Journal of the American Chemical Society N2 - The reductive coupling of an NHC-stabilized aryldibromoborane yields a mixture of trans- and cis-diborenes in which the aryl groups are coplanar with the diborene core. Under dilute reduction conditions two diastereomers of a borirane-borane intermediate are isolated, which upon further reduction give rise to the aforementioned diborene mixture. DFT calculations suggest a mechanism proceeding via nucleophilic attack of a dicoordinate borylene intermediate on the aryl ring and subsequent intramolecular B-B bond formation. KW - boron KW - reactive intermediates KW - reductive coupling Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-203140 N1 - This document is the unedited Author’s version of a Submitted Work that was subsequently accepted for publication in Journal of the American Chemical Society, copyright © American Chemical Society after peer review. To access the final edited and published work see https://doi.org/10.1021/jacs.0c02306 ER - TY - JOUR A1 - Jos, Swetha A1 - Szwetkowski, Connor A1 - Slebodnick, Carla A1 - Ricker, Robert A1 - Chan, Ka Lok A1 - Chan, Wing Chun A1 - Radius, Udo A1 - Lin, Zhenyang A1 - Marder, Todd B. A1 - Santos, Webster L. T1 - Transition Metal‐Free Regio‐ and Stereo‐Selective trans Hydroboration of 1,3‐Diynes: A Phosphine‐Catalyzed Access to (E)‐1‐Boryl‐1,3‐Enynes JF - Chemistry – A European Journal N2 - We report a transition metal‐free, regio‐ and stereo‐selective, phosphine‐catalyzed method for the trans hydroboration of 1,3‐diynes with pinacolborane that affords (E)‐1‐boryl‐1,3‐enynes. The reaction proceeds with excellent selectivity for boron addition to the external carbon of the 1,3‐diyne framework as unambiguously established by NMR and X‐ray crystallographic studies. The reaction displays a broad substrate scope including unsymmetrical diynes to generate products in high yield (up to 95 %). Experimental and theoretical studies suggest that phosphine attack on the alkyne is a key process in the catalytic cycle. KW - enediyne KW - enyne KW - hydroboration KW - organocatalytic KW - stereoselective Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-293784 VL - 28 IS - 63 ER - TY - THES A1 - Mao, Lujia T1 - Transition Metal-Catalyzed Construction of Benzyl/Allyl sp\(^3\) and Vinyl/Allenyl sp\(^2\) C-B Bonds T1 - Übergangsmetall katalysierte Konstruktion von Benzyl/Allyl sp\(^3\) und Vinyl/Allenyl sp\(^2\) C-B Bindungen N2 - Organoboron compounds, such as benzyl-, allyl-, allenyl-, vinyl-, and 2-boryl allyl-boronates, have been synthesized via metal-catalyzed borylations of sp3 C-O and C-H bonds. Thus, Cu-catalyzed borylations of alcohols and their derivatives provide benzyl-, allyl-, allenyl-, vinyl-, and 2-boryl allyl-boronates via nucleophilic substitution. The employment of Ti(OiPr)4 turns the OH moiety into a good leaving group (‘OTi’). The products of Pd-catalyzed oxidative borylations of allylic C-H bonds of alkenes were isolated and purified, and their application in the one-pot synthesis of stereodefined homoallyl alcohols was also investigated. Chapter 2 presents a copper-catalyzed synthesis of benzyl-, allyl-, and allenyl-boronates from benzylic, allylic, and propargylic alcohols, respectively, employing a commercially available catalyst precursor, [Cu(CH3CN)4]2+[BF4-]2, and Xantphos as the ligand. The borylation of benzylic alcohols was carried out at 100 oC with 5-10 mol % [Cu(CH3CN)4]2+[BF4-]2, which afforded benzylic boronates in 32%-95% yields. With 10 mol % [Cu(CH3CN)4]2+[BF4-]2, allylic boronates were provided in 53%-89% yields from the borylation of allylic alcohols at 60 or 100 oC. Secondary allylboronates were prepared in 72%-84% yields from the borylation of primary allylic alcohols, which also suggests that a nucleophilic substitution pathway is involved in this reaction. Allenylboronates were also synthesized in 72%-89% yields from the borylation of propargylic alcohols at 40 or 60 oC. This methodology can be extended to borylation of benzylic and allylic acetates. This protocol exhibits broad reaction scope (40 examples) and high efficiency (up to 95% yield) under mild conditions, including the preparation of secondary allylic boronates. Preliminary mechanistic studies suggest that nucleophilic substitution is involved in this reaction. Chapter 3 reports an efficient methodology for the synthesis of vinyl-, allyl-, and (E)-2-boryl allylboronates from propargylic alcohols via copper-catalyzed borylation reactions under mild conditions. In the presence of a commercially available catalyst precursor (Cu(OAc)2 or Cu(acac)2) and ligand (Xantphos), the reaction affords the desired products in up to 92% yield with a broad substrate scope (43 examples). Vinylboronates were synthesized in 50%-83% yields via Cu-catalyzed hydroboration of mono-substituted propargylic alcohols. With 1,1-disubstituted propargylic alcohols as the starting materials and Cu(OAc)2 as the catalyst precursor, a variety of allylboronates were synthesized in 44%-83% yields. The (E)-2-boryl allylboronates were synthesized in 54%-92% yields via the Cu-catalyzed diboration of propargylic alcohols. The stereoselectivity is different from the Pd(dba)2-catalyzed diboration of allenes that provided (Z)-2-boryl allylboronates predominantly. The isolation of an allenyl boronate as the reaction intermediate suggests that an SN2’-type reaction, followed by borylcupration, is involved in the mechanism of the diboration of propargylic alcohols. In chapter 4, a Pd-catalyzed allylic C-H borylation of alkenes is reported. The transformation exhibits high regioselectivity with a variety of linear alkenes, employing a Pd-pincer complex as the catalyst precursor, and the allylic boronate products were isolated and purified. This protocol can also be extended to one-pot carbonyl allylation reactions to provide homoallyl alcohols efficiently. An interesting mechanistic feature is that the reaction proceeds via a Pd(II)/Pd(IV) catalytic cycle. Formation of the Pd(IV) intermediate occurs by a unique combination of an NCNpincer complex and application of F-TEDA-BF4 as the oxidant. An important novelty of the present C-H borylation reaction is that all allyl-Bpin products can be isolated with usually high yields. This is probably a consequence of the application of the NCN-pincer complex as catalyst, which selectively catalyzes C-B bond formation avoiding subsequent C-B bond cleavage based side-reactions N2 - Bisher ist es uns gelungen, effiziente Methoden zur Erzeugung von Benzyl/Allyl-sp3- und Vinyl/Allenyl-sp2-C-B-Bindungen mit Hilfe von Kupfer- oder Palladium-katalysierter Borylierung der entsprechenden Alkohole oder Alkene zu entwickeln, bei welchen es sich um leicht zugängliche Substrate handelt. Kapitel 2 In Kapitel 2 wird das erste Beispiel einer Cu-katalysierten, direkten Borylierung von Alkoholen (40 Beispiele) vorgestellt. Dies stellt eine effiziente Methode dar, um ein breites Spektrum an Benzyl-, Allyl- und Allenyl-Boronaten unter milden Bedingungen herzustellen. Die Verwendung von Ti(OiPr)4 wandelt den OH-Rest in eine hervorragende Abgangsgruppe (‚OTi‘) um, was eine wichtige Rolle bei der Borylierung von Alkoholen spielt. Obwohl ein Cu(II)-Komplex als Vorstufe für den Katalysator eingesetzt wurde, wird davon ausgegangen, dass der aktive Katalysator für die Borylierungsreaktion eine Cu(I)-Spezies ist. Benzylboronate wurden mit Hilfe einer Cu-katalysierten Borylierung von Benzylalkoholen (Gl. Z-1) dargestellt, wobei sowohl der Kupferkomplex [Cu(CH3CN)4]2+[BF4-]2 als auch der Xantphos-Ligand kommerziell erhältlich sind. Für die Borylierung von Benzylalkoholen wurde eine Katalysatorladung von 5 mol% des Kupferkatalysators verwendet, was auf eine hohe Effizienz dieser Methode schließen lässt. Alle Benzylboronate wurden in moderaten bis hohen Ausbeuten (bis zu 95%) isoliert. Diese Vorgehensweise lässt sich ebenso auf die Borylierung von Benzylacetaten anwenden, wobei ein Benzylboronat mit 54% Ausbeute erhalten werden kann. Dies lässt darauf schließen, dass es sich um eine allgemein anwendbare Methode handelt. Ferner wurden Allylboronate mit Hilfe einer vergleichbaren Route wie die Benzylboronate dargestellt (Gl. Z-2), wobei die Temperatur auf 60 °C abgesenkt werden kann. Bei der Borylierung von Allylalkoholen wurden ausgehend von primären Allylalkoholen sekundäre Allylboronate erhalten. Diese Reaktion unterscheidet sich daher von früheren Pd-katalysierten Borylierungen von Zusammenfassung Allylalkoholen, welche ausschließlich zu linearen Allylboronaten aufgrund der Bildung von (3- Allyl)Pd-Intermediaten führten. Anhand dieses Ergebnisses wird angenommen, dass eine nukleophile Substitution Teil des entsprechenden Mechanismus ist. Weiterhin weist diese Reaktion die Möglichkeit auf, chirale Allylboronate ausgehend von verschiedenen primären Allylalkoholen zu erhalten. Diese finden signifikante Anwendung bei der asymmetrischen Synthese. Unseres Wissens nach stellt diese Methode außerdem das erste Beispiel einer katalytischen Synthese von sekundären Allylboronaten dar, die direkt von Alkoholen ausgeht. Die Borylierung konnte ebenfalls mit sekundären und tertiären Allylalkoholen durchgeführt werden, wobei die entsprechenden Allylboronate in guten Ausbeuten erhalten wurden. Diese Cu-katalysierte Borylierungsreaktion kann außerdem Anwendung in der Borylierung von Propargylalkoholen finden (Gl. Z-3), wobei die Darstellung von Allenylboronaten in guten Ausbeuten erreicht wird. Hierbei kann die Reaktionstemperatur weiter auf 40 °C abgesenkt werden. Des Weiteren weist die Regioselektivität der Borylierung von Propargylakoholen darauf hin, dass die Reaktion über eine nukleophile Substitution verläuft. Die in Kapitel 2 vorgestellten Ergebnisse lassen darauf schließen, dass die Cu-katalysierte Borylierung von Akoholen eine allgemein anwendbare Methode zur Synthese von Benzyl-, Allylund Allenylboronaten darstellt. Kapitel 3 In Kapitel 3 wird eine Methode zur Synthese von Vinyl-, Allyl- und (E)-2-Boryl-Allyl-Boronaten mit Hilfe von Cu-katalysierter Borylierung von Propargylalkoholen (43 Beispiele) vorgestellt. Hierzu wurden kommerziell erhältliche Kupferkatalysatoren wie Cu(acac)2 und Cu(OAc)2 eingesetzt. In dieser Vorschrift wird erneut Ti(OiPr)4 verwendet, um durch die Reaktion mit Alkoholen (OH) in eine bessere Abgangsgruppe (OTi) zu erhalten. Zugang zu den (E)-2-Boryl-Allylboronaten wurde mit Hilfe von Cu-katalysierter Diborylierung von Propargylalkoholen (Gl. Z-4) ermöglicht. Die Reaktion kann bei 60 oder 80 °C durchgeführt werden. Die Regioselektivität dieser Cu-katalysierten Diborylierungsreaktion unterscheidet sich von der Pd2(dba)3-katalysierten Diborylierung von Allenen, bei der 2-Boryl-Allyl-Boronate mit C=C Doppelbindungen an der terminalen Position erhalten werden. Die Stereoselektivität weist ebenfalls einen Unterschied zur Pd(dba)2-katalysierten Diborylierung von Allenen auf. Bei dieser werden vorranging (Z)-2-Boryl-Allyl-Boronate mit C=C-Doppelbindungen an der internen Position erzeugt. Dies offenbart eine einzigartige Eigenschaft unserer Cu-katalysierten Diborylierung von Propargylalkoholen, welche die Nützlichkeit von Alkoholen in der Entwicklung der synthetischen Methode erweitert. Die Isolierung eines Allenylboronates als Zwischenprodukt während der Reaktion lässt vermuten, dass der Mechanismus der Diborylierung von Propargylalkoholen gemäß einer SN2‘-Reaktion verläuft, auf die eine Borylcuprierung folgt. Die Borylierung von 1,1-disubstituierten Propargylalkoholen, bei der Cu(OAc)2 als Vorstufe des Katalysators eingesetzt wird, führt zur Bildung von (Z)-Allylboronaten als Hauptprodukt (Gl. Z-5). Die Regio- und Stereoselektivität dieser Reaktion und der Cu-katalysierten Borylcuprierung von Allenylsilanen stimmen überein, wobei ein Unterschied zur Pd-katalysierten Borylierung von Allylalkoholen besteht, bei der vorrangig (E)-Allylboronate entstehen. Es liegt nahe, dass die Cukatalysierte Borylierung von 1,1-disubstituierten Propargylalkoholen eine alternative Route zur Herstellung von (Z)-Allylboronaten darstellt, da die Startmaterialien entweder kommerziell erhältlich oder einfach herzustellen sind. Vinylboronate werden ebenfalls mit Hilfe der Cu-katalysierten Borylierung von monosubstituierten Propargylalkoholen (Gl. Z-6) dargestellt. Die Regioselektivität hierbei stimmt mit der der Cu-katalysierten Borylcuprierung von Alkinen überein. Verglichen mit der Borylcuprierung von Allenen bietet die Borylierung von mono-substituierten Propargylalkoholen einen direkteren Zugang zur Darstellung von Vinylboronaten, da Allene in der Regel ausgehend von Propargylalkoholen dargestellt werden. Alle in Kapitel 3 diskutierten Ergebnisse weisen darauf hin, dass die Cu-katalysierte Borylierung von Propargylalkoholen eine einzigartige Methode zur Synthese von Vinyl-, Allyl- und (E)-2-Boryl- Allylboronaten bietetund eine allgemein anwendbare Vorschrift zur Herstellung von Organobor- Verbindungen mit einfach zugänglichen Startmaterialien darstellt. Die Regio- und Stereoselektivität unterscheidet sich außerdem von den bereits bekannten Methoden. Obwohl Cu(II)-Vorstufen der Katalysatoren eingesetzt werden, handelt es sich bei der katalytisch aktiven Spezies vermutlich um eine Cu(I)-Verbindung, da die Borylierungsreaktionen unter reduktiven Bedingungen durchgeführt werden. Kapitel 4 In Kapitel 4 wurde eine Pd-katalysierte oxidative Borylierung der C-H Bindungen von Alkenen (Gl. Z-7) vorgestellt, bei der eine Vielzahl an linearen Allylboronaten in guten Ausbeuten erzeugt wurde (Gl. Z-7). Außerdem konnten alle Allylboronate isoliert und gereinigt werden, was eine einzigartige Eigenschaft dieser Methode darstellt. Ein interessanter mechanistischer Aspekt dieser Reaktion ist das Durchlaufen eines Pd(II)/Pd(IV)-Katalysezyklus. Die Bildung des Pd(IV)-Intermediates erfolgt durch eine einzigartige Kombination des NCN-Pincerkomplexes A als Katalysaror und F-TEDABF4 als Oxidationsreagenz. Eine wichtige Neuerung der vorgestellten C-H-Borylierungsreaktion ist, dass sämtliche Allyl-BPin-Produkte für gewöhnlich in hohen Ausbeuten isoliert werden können. Dies ist vermutlich eine Folge der Verwendung des Pincer-Komplexes A als Katalysator, welcher selektiv die C-B-Bindungsbildung katalysiert und anschließend, als Pd(IV)-Spezies, C-BBindungsspaltungen als Nebenreaktionen vermeidet. Außerdem kann unsere Vorschrift auf Eintopf-Reaktionen von Aldehyden mit Allylen angewendet werden, um Homoallylalkohole zu erhalten (Gl. Z-8). Zusammengefasst haben wir eine Vielzahl an Borylierungsreaktionen entwickelt, um Benzyl-, Allyl-, Allenyl-, Vinyl- und 2-Boryl-Allylboronate mit Hilfe von Cu- oder Pd-katalysierter Borylierung von Alkoholen und Alkenen, bei denen es sich um leicht zugängliche Startmaterialien handelt, darzustellen. Die Reinigung dieser reaktiven Organobor-Verbindungen weist darauf hin, dass unsere Methoden die Werkzeuge zur Untersuchung der Reaktivität dieser Verbindungen liefern könnten. Die Synthese von sekundären Allylboronaten und 2-Boryl-Allylboronaten beinhaltet außerdem die potenzielle Anwendung in der asymmetrischen Synthese zur Erzeugung wertvoller asymmetrischer Organobor-Verbindungen. KW - borylation KW - synthetic methodology KW - Übergangsmetall KW - Borylierung Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-154022 ER - TY - JOUR A1 - Liu, Zhiqiang A1 - Kole, Goutam Kumar A1 - Budiman, Yudha P. A1 - Tian, Ya-Ming A1 - Friedrich, Alexandra A1 - Luo, Xiaoling A1 - Westcott, Stephen A. A1 - Radius, Udo A1 - Marder, Todd B. T1 - Transition metal catalyst-free, base-promoted 1,2-additions of polyfluorophenylboronates to aldehydes and ketones JF - Angewandte Chemie International Edition N2 - A novel protocol for the transition metal-free 1,2-addition of polyfluoroaryl boronate esters to aldehydes and ketones is reported, which provides secondary alcohols, tertiary alcohols, and ketones. Control experiments and DFT calculations indicate that both the ortho-F substituents on the polyfluorophenyl boronates and the counterion K\(^+\) in the carbonate base are critical. The distinguishing features of this procedure include the employment of commercially available starting materials and the broad scope of the reaction with a wide variety of carbonyl compounds giving moderate to excellent yields. Intriguing structural features involving O−H⋅⋅⋅O and O−H⋅⋅⋅N hydrogen bonding, as well as arene-perfluoroarene interactions, in this series of racemic polyfluoroaryl carbinols have also been addressed. KW - inorganic chemistry KW - transition metal-free KW - alcohol KW - 1,2-additionreaction KW - boronateesters KW - fluoroarene Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256487 VL - 60 IS - 30 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 - JOUR A1 - Lenczyk, Carsten A1 - Roy, Dipak Kumar A1 - Oberdorf, Kai A1 - Nitsch, Jörn A1 - Dewhurst, Rian D. A1 - Radacki, Krzysztof A1 - Halet, Jean-François A1 - Marder, Todd B. A1 - Bickelhaupt, Matthias A1 - Braunschweig, Holger T1 - Toward Transition‐Metal‐Templated Construction of Arylated B\(_{4}\) Chains by Dihydroborane Dehydrocoupling JF - Chemistry - A European Journal N2 - The reactivity of a diruthenium tetrahydride complex towards three selected dihydroboranes was investigated. The use of [DurBH\(_{2}\)] (Dur=2,3,5,6‐Me\(_{4}\)C\(_{6}\)H) and [(Me\(_{3}\)Si)\(_{2}\)NBH\(_{2}\)] led to the formation of bridging borylene complexes of the form [(Cp\(^{*}\)RuH)\(_{2}\)BR] (Cp\(^{*}\)=C\(_{5}\)Me\(_{5}\); 1 a: R=Dur; 1 b: R=N(SiMe\(_{3}\))\(_{2}\)) through oxidative addition of the B−H bonds with concomitant hydrogen liberation. Employing the more electron‐deficient dihydroborane [3,5‐(CF\(_{3}\))\(_{2}\)‐C\(_{6}\)H\(_{3}\)BH\(_{2}\)] led to the formation of an anionic complex bearing a tetraarylated chain of four boron atoms, namely Li(THF)\(_{4}\)[(Cp\(^{*}\)Ru)\(_{2}\)B\(_{4}\)H\(_{5}\)(3,5‐(CF\(_{3}\))\(_{2}\)C\(_{6}\)H\(_{3}\))\(_{4}\)] (4), through an unusual, incomplete threefold dehydrocoupling process. A comparative theoretical investigation of the bonding in a simplified model of 4 and the analogous complex nido‐[1,2(Cp\(^{*}\)Ru)\(_{2}\)(μ‐H)B\(_{4}\)H\(_{9}\)] (I) indicates that there appear to be no classical σ‐bonds between the boron atoms in complex I, whereas in the case of 4 the B\(_{4}\) chain better resembles a network of three B−B σ bonds, the central bond being significantly weaker than the other two. KW - transition metal KW - B−H activation KW - boron KW - dehydrocoupling KW - ruthenium Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-214324 VL - 25 IS - 72 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 - Bura, Thomas A1 - Beaupré, Serge A1 - Légaré, Marc-André A1 - Ibraikulov, Olzhas A. A1 - Leclerc, Nicolas A1 - Leclerc, Mario T1 - Theoretical calculations for highly selective Direct Heteroarylation Polymerization: new nitrile-substituted Dithienyl-Diketopyrrolopyrrole-based polymers JF - Molecules N2 - Direct Heteroarylation Polymerization (DHAP) is becoming a valuable alternative to classical polymerization methods being used to synthesize π-conjugated polymers for organic electronics applications. In previous work, we showed that theoretical calculations on activation energy (Ea) of the C–H bonds were helpful to rationalize and predict the selectivity of the DHAP. For readers’ convenience, we have gathered in this work all our previous theoretical calculations on Ea and performed new ones. Those theoretical calculations cover now most of the widely utilized electron-rich and electron-poor moieties studied in organic electronics like dithienyl-diketopyrrolopyrrole (DT-DPP) derivatives. Theoretical calculations reported herein show strong modulation of the Ea of C–H bond on DT-DPP when a bromine atom or strong electron withdrawing groups (such as fluorine or nitrile) are added to the thienyl moiety. Based on those theoretical calculations, new cyanated dithienyl-diketopyrrolopyrrole (CNDT-DPP) monomers and copolymers were prepared by DHAP and their electro-optical properties were compared with their non-fluorinated and fluorinated analogues. KW - DHAP KW - selectivity KW - theoretical calculations KW - conjugated polymers KW - organic electronics Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197648 SN - 1420-3049 VL - 23 IS - 9 ER - TY - JOUR A1 - Kaupp, Martin A1 - Stoll, Hermann A1 - Preuss, Heinzwerner A1 - Kaim, Wolfgang A1 - Stahl, Thomas A1 - van Koten, Gerard A1 - Wissing, Elmo A1 - Smeets, Wilberth J. J. A1 - Spek, Anthony L. T1 - Theoretical and Experimential Study of Diamagnetic and Paramagnetic Products from Thermal and Light-Induced Alkyl Transfer between Zinc or Magnesium Dialkyls and 1,4-Diaza-1,3-butadiene Substrates N2 - No abstract available KW - Anorganische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60173 ER - TY - JOUR A1 - Kaupp, Martin A1 - Schleyer, Paul von Rague T1 - The Structure and Stability Trends Fluoro(methyl)plumbanes N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60105 ER - TY - JOUR A1 - Kaupp, Martin A1 - Schleyer, Paul. von Rague T1 - The Structural Variations of Monomeric Alkaline Earth MX\(_2\)-Compounds (M = Ca, Sr, Ba; X = Li, BeH, BH\(_2\), CH\(_3\), NH\(_2\),OH, F). An ab Initio Pseudopotential Study N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60152 ER - TY - JOUR A1 - Kaupp, Martin A1 - Schleyer, Paul. von Rague A1 - Stoll, Hermann A1 - Preuss, Heinzwerner T1 - The Question of bending of the Alkaline Earth Dihalides MX\(_2\) (M = Be, Mg, Ca, Sr, Ba; X = F, C1, Br, I). An ab Initio Pseudopotential Study N2 - No abstract available KW - Anorganische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60166 ER - TY - JOUR A1 - Kaupp, Martin A1 - Schleyer, Paul von Rague T1 - The Peculiar Coordination of Brium: Ab Initio Study of the Molecular and Electronic Structures of the Group 2 Dihydride Dimers M\(_2\)H\(_4\) (M=Mg, Ca, Sr, Ba) N2 - No abstract available KW - Anorganische Chemie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60048 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 - Kaupp, Martin A1 - Charkin, Oleg P. A1 - Schleyer, Paul von Rague T1 - The Ions MCp\(^{2+}\) (M = Sc, La): Significantly Bent Sandwich Species N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60082 ER - TY - THES A1 - Hasenstab-Riedel, Sebastian T1 - The Highest Oxidation States of the 5d Transition Metals : a Quantum-Chemical Study T1 - Die höchsten Oxidationsstufen der 5d Übergangsmetalle: Eine quantenchemische Studie N2 - The theoretical work presented in this thesis is concerned with the highest possible oxidation states of the 5d transition metal row. Based on a validation study of several DFT functionals against accurate coupled-cluster CCSD(T) methods we will present calculations on a series of new high oxidation state HgIV species. Quantum-chemical calculations have also been applied to various fluoro complexes of gold in oxidation states +V through +VII to evaluate the previously claimed existence of AuF7. The calculations indicate clearly that the oxidation state (+V), e.g., in [AuF5]2, remains the highest well-established gold oxidation state. Further calculations on iridium in oxidation state (+VII) show that IrF7 and IrOF5 are viable synthetic targets, whereas higher oxidation states of iridium appear to be unlikely. Structures and stabilities of several osmium fluorides and oxyfluorides were also studied in this thesis. It is shown that homoleptic fluorides all the way up to OsF8 may exist. Combining the results of the most accurate quantum-chemical predictions of this thesis and of the most reliable experimental studies, we observe a revised trend of the highest oxidation states of the 5d transition metal row. From lanthanum (+III) to osmium (+VIII), there is a linear increase of the highest oxidation states with increasing atomic number. Thereafter, we observe a linear descent from osmium (+VIII) to mercury (+IV). We will also present a short outlook to the transition metals of the 3d and 4d row and their highest reachable oxidation states. N2 - In der vorliegenden theoretischen Arbeit wurden mittels quantenchemischer Methoden die höchsten Oxidationsstufen der späten Übergangselemente untersucht. Um eine adäquate Beschreibung dieser Systeme zu gewährleisten, wurde zuerst eine Validierungsstudie verschiedener Dichtefunktionale, die mit hochgenauen coupled-cluster CCSD(T) Berechnungen verglichen wurden, durchgeführt. Das zugrundeliegende Referenzsystem war Quecksilber in der Oxidationsstufe +IV (HgF4, HgCl4, HgH4). Es wurden Strukturoptimierungen von Minima und Übergangszuständen, Atomisierungsenergien sowie die entsprechenden Zerfallsreaktionen für die Systeme betrachtet. Basierend auf diesen Ergebnissen konnten weitere HgIV Systeme mit sogenannten „Weakly Coordinating Anions“ wie z.B. [OTeF5]-, [AsF6]-, [Sb2F11]- usw. unter Verwendung von Dichtefunktionalmethoden untersucht werden. Die beiden Verbindungen Hg[OTeF5]4 und Hg[AsF6]4 scheinen dabei die Oxidationsstufe +IV am besten zu stabilisieren. Quantenchemische Methoden wurden ebenfalls zur Berechnung von Fluorkomplexen des Goldes in den Oxidationsstufen von +V bis +VII verwendet. Dabei wurde insbesondere überprüft, ob das angeblich experimentell gefundene AuF7 tatsächlich existiert. Es konnte gezeigt werden, dass eine Existenz von AuF7 unter den in der Literatur angegebenen Bedingungen sehr wahrscheinlich ausgeschlossen werden kann. Diese Instabilität wird ebenfalls für das quantenchemisch untersuchte AuF6 beobachtet. Somit bleibt die Oxidationsstufe +V in [AuF5]2 die höchste erreichbare Oxidationsstufe für Gold. Basierend auf coupled-cluster CCSD(T) Berechnungen konnten die Verbindungen des Iridiums in der Oxidationsstufe +VII (IrF7, IrOF5) als thermochemisch stabil vorhergesagt werden, wohingegen die höheren Iridiumverbindungen des IrVIII und IrIX sehr unwahrscheinlich sind. Außerdem wurden Strukturen und Stabilitäten verschiedener Osmiumfluoride und Oxyfluoride in dieser Arbeit diskutiert. Es konnte gezeigt werden, dass ausgehend von OsF6 auch die höheren Verbindungen OsF7 und OsF8 experimentell zugänglich sein sollten. Kombiniert man die in dieser Arbeit vorhergesagten Verbindungen in ihren höchsten Oxidationsstufen mit den verlässlichsten experimentellen Untersuchungen, so beobachtet man einen revidierten Trend der höchsten Oxidationsstufen der 5d-Übergangsmetallreihe: Direkt proportional zur Ordnungszahl steigen die höchsten Oxidationszahlen zunächst linear an, von Os (+VIII) bis hin zu Hg (+IV) kann ein linearer Abfall beobachtet werden. Abschließend werden in dieser Arbeit die höchsten Oxidationsstufen der 3d und 4d Übergangsmetalle in einer kurzen Übersicht vorgestellt. KW - Oxidationszahl KW - Übergangsmetall KW - Dichtefunktionalformalismus KW - Coupled Cluster KW - Fluoride KW - Oxidationsstufen KW - Übergangselemente KW - Dichtefunktionaltheorie KW - Coupled-Cluster KW - Fluoride KW - Oxidation states KW - Transition metals KW - Density functional theory KW - Coupled-Cluster KW - Fluorides Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-19402 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 - Kaupp, Martin A1 - Schleyer, Paul von Rague A1 - Dolg, Michael A1 - Stoll, Hermann T1 - The Equilibrium Structures of Monomeric Group 2 and Lanthanide(II) Metallocenes MCp2 (M = Ca, Sr, Ba, Sm, Eu, Yb) Studied by ab Initio Calculations N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60139 ER - TY - JOUR A1 - Griesbeck, Stefanie A1 - Michail, Evripidis A1 - Rauch, Florian A1 - Ogasawara, Hiroaki A1 - Wang, Chenguang A1 - Sato, Yoshikatsu A1 - Edkins, Robert M. A1 - Zhang, Zuolun A1 - Taki, Masayasu A1 - Lambert, Christoph A1 - Yamaguchi, Shigehiro A1 - Marder, Todd B. T1 - The Effect of Branching on the One‐ and Two‐Photon Absorption, Cell Viability, and Localization of Cationic Triarylborane Chromophores with Dipolar versus Octupolar Charge Distributions for Cellular Imaging JF - Chemistry – A European Journal N2 - Two different chromophores, namely a dipolar and an octupolar system, were prepared and their linear and nonlinear optical properties as well as their bioimaging capabilities were compared. Both contain triphenylamine as the donor and a triarylborane as the acceptor, the latter modified with cationic trimethylammonio groups to provide solubility in aqueous media. The octupolar system exhibits a much higher two‐photon brightness, and also better cell viability and enhanced selectivity for lysosomes compared with the dipolar chromophore. Furthermore, both dyes were applied in two‐photon excited fluorescence (TPEF) live‐cell imaging. KW - boranes KW - cell imaging KW - fluorescence KW - lysosome KW - two-photon excited fluorescence Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212887 VL - 25 IS - 57 SP - 13164 EP - 13175 ER - TY - JOUR A1 - Griesbeck, Stefanie A1 - Michail, Evripidis A1 - Rauch, Florian A1 - Ogasawara, Hiroaki A1 - Wang, Chenguang A1 - Sato, Yoshikatsu A1 - Edkins, Robert M. A1 - Zhang, Zuolun A1 - Taki, Masayasu A1 - Lambert, Christoph A1 - Yamaguchi, Shigehiro A1 - Marder, Todd B. T1 - The Effect of Branching on One- and Two-Photon Absorption, Cell Viability and Localization of Cationic Triarylborane Chromophores with Dipolar versus Octupolar Charge Distributions for Cellular Imaging JF - Chemistry - A European Journal N2 - Two different chromophores, namely a dipolar and an octupolar system, were prepared and their linear and nonlinear optical properties as well as their bioimaging capabilities were compared. Both contain triphenylamine as the donor and a triarylborane as the acceptor, the latter modified with cationic trimethylammonio groups to provide solubility in aqueous media. The octupolar system exhibits a much higher two‐photon brightness, and also better cell viability and enhanced selectivity for lysosomes compared with the dipolar chromophore. Furthermore, both dyes were applied in two‐photon excited fluorescence (TPEF) live‐cell imaging. KW - boranes KW - cell imaging KW - fluerescence KW - lysosome KW - two-photon excited fluorescence Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204829 VL - 25 IS - 57 ER - TY - JOUR A1 - Kaupp, Martin A1 - Schnering, Hans Georg von T1 - The Dominance of Linear 2-Coordination in Mercury Chemistry: Quasirelativistic and Nonrelativistic ab Initio Pseudopotential Study of (HgX\(_2\))\(_2\) (X=F, Cl, Br, I, H) N2 - No abstract available KW - Anorganische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59995 ER - TY - JOUR A1 - Ramler, Jaqueline A1 - Fantuzzi, Felipe A1 - Geist, Felix A1 - Hanft, Anna A1 - Braunschweig, Holger A1 - Engels, Bernd A1 - Lichtenberg, Crispin T1 - The dimethylbismuth cation: entry into dative Bi-Bi bonding and unconventional methyl exchange JF - Angewandte Chemie International Edition N2 - The dimethyl bismuth cation, [BiMe\(_2\)(SbF\(_6\))], has been isolated and characterized. Reaction with BiMe\(_3\) allows access to the first compound featuring Bi→Bi donor–acceptor bonding. In solution, dynamic behavior with methyl exchange via an unusual S\(_E\)2 mechanism is observed, underlining the unique properties of bismuth species as soft Lewis acids with the ability to undergo reversible Bi−C bond cleavage. KW - inorganic chemistry KW - methyl exchange KW - bismuth KW - cationic species KW - electrophilic substitution KW - Lewis acidity Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256543 VL - 60 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 - 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 - JOUR A1 - Muessig, Jonas H. A1 - Lisinetskaya, Polina A1 - Dewhurst, Rian D. A1 - Bertermann, Rüdiger A1 - Thaler, Melanie A1 - Mitric, Roland A1 - Braunschweig, Holger T1 - Tetraiododiborane(4) (B\(_2\)I\(_4\)) is a Polymer based on sp\(^3\) Boron in the Solid State JF - Angewandte Chemie International Edition N2 - Herein we present the first solid‐state structures of tetraiododiborane(4) (B\(_2\)I\(_4\)), which was long believed to exist in all phases as discrete molecules with planar, tricoordinate boron atoms, like the lighter tetrahalodiboranes(4) B\(_2\)F\(_4\), B\(_2\)Cl\(_4\), and B\(_2\)Br\(_4\). Single‐crystal X‐ray diffraction, solid‐state NMR, and IR measurements indicate that B\(_2\)I\(_4\) in fact exists as two different polymeric forms in the solid state, both of which feature boron atoms in tetrahedral environments. DFT calculations are used to simulate the IR spectra of the solution and solid‐state structures, and these are compared with the experimental spectra. KW - boron tetraiodide KW - boron KW - density functional theory KW - diborane KW - halides KW - solid-state sturcture Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-209428 VL - 59 ER - TY - JOUR A1 - Franzsico, Marcos A. S. A1 - Fantuzzi, Felipe A1 - Cardozo, Thiago M. A1 - Esteves, Pierre M. A1 - Engels, Bernd A1 - Oliveira, Ricardo R. T1 - Taming the Antiferromagnetic Beast: Computational Design of Ultrashort Mn-Mn Bonds Stabilized by N-Heterocyclic Carbenes JF - Chemistry—A European Journal N2 - The development of complexes featuring low-valent, multiply bonded metal centers is an exciting field with several potential applications. In this work, we describe the design principles and extensive computational investigation of new organometallic platforms featuring the elusive manganese-manganese bond stabilized by experimentally realized N-heterocyclic carbenes (NHCs). By using DFT computations benchmarked against multireference calculations, as well as MO- and VB-based bonding analyses, we could disentangle the various electronic and structural effects contributing to the thermodynamic and kinetic stability, as well as the experimental feasibility, of the systems. In particular, we explored the nature of the metal-carbene interaction and the role of the ancillary η\(^{6}\) coordination to the generation of Mn\(_{2}\) systems featuring ultrashort metal-metal bonds, closed-shell singlet multiplicities, and positive adiabatic singlet-triplet gaps. Our analysis identifies two distinct classes of viable synthetic targets, whose electrostructural properties are thoroughly investigated. KW - metal-metal interactions KW - ab initio calculations KW - carbene ligands KW - density functional calculations KW - manganese Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256874 VL - 27 IS - 47 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 - JOUR A1 - Berger, Sarina M. A1 - Ferger, Matthias A1 - Marder, Todd B. T1 - Synthetic Approaches to Triarylboranes from 1885 to 2020 JF - Chemistry – A European Journal N2 - In recent years, research in the fields of optoelectronics, anion sensors and bioimaging agents have been greatly influenced by novel compounds containing triarylborane motifs. Such compounds possess an empty p‐orbital at boron which results in useful optical and electronic properties. Such a diversity of applications was not expected when the first triarylborane was reported in 1885. Synthetic approaches to triarylboranes underwent various changes over the following century, some of which are still used in the present day, such as the generally applicable routes developed by Krause et al. in 1922, or by Grisdale et al. in 1972 at Eastman Kodak. Some other developments were not pursued further after their initial reports, such as the synthesis of two triarylboranes bearing three different aromatic groups by Mikhailov et al. in 1958. This review summarizes the development of synthetic approaches to triarylboranes from their first report nearly 135 years ago to the present. KW - arylmetalate KW - boranes KW - chromophore KW - Lewis acid KW - synthetic methods Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-238952 VL - 27 IS - 24 SP - 7043 EP - 7058 ER - TY - JOUR A1 - Merz, Julia A1 - Dietz, Maximilian A1 - Vonhausen, Yvonne A1 - Wöber, Frederik A1 - Friedrich, Alexandra A1 - Sieh, Daniel A1 - Krummenacher, Ivo A1 - Braunschweig, Holger A1 - Moos, Michael A1 - Holzapfel, Marco A1 - Lambert, Christoph A1 - Marder, Todd B. T1 - Synthesis, Photophysical and Electronic Properties of New Red-to-NIR Emitting Donor-Acceptor Pyrene Derivatives JF - Chemistry - A European Journal N2 - We synthesized new pyrene derivatives with strong bis(para ‐methoxyphenyl)amine donors at the 2,7‐positions and n ‐azaacene acceptors at the K‐region of pyrene. The compounds possess a strong intramolecular charge transfer, leading to unusual properties such as emission in the red to NIR region (700 nm), which has not been reported before for monomeric pyrenes. Detailed photophysical studies reveal very long intrinsic lifetimes of >100 ns for the new compounds, which is typical for 2,7‐substituted pyrenes but not for K‐region substituted pyrenes. The incorporation of strong donors and acceptors leads to very low reduction and oxidation potentials, and spectroelectrochemical studies show that the compounds are on the borderline between localized Robin‐Day class‐II and delocalized Robin‐Day class‐III species. KW - orylation KW - K-region KW - luminescence KW - polycyclic aromatic hydrocarbons KW - redox Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-207486 VL - 26 IS - 2 ER - TY - JOUR A1 - Merz, Julia A1 - Dietrich, Lena A1 - Nitsch, Jörn A1 - Krummenacher, Ivo A1 - Braunschweig, Holger A1 - Moos, Michael A1 - Mims, David A1 - Lambert, Christoph A1 - Marder, Todd B. T1 - Synthesis, Photophysical and Electronic Properties of Mono‐, Di‐, and Tri‐Amino‐Substituted Ortho‐Perylenes, and Comparison to the Tetra‐Substituted Derivative JF - Chemistry – A European Journal N2 - We synthesized a series of new mono‐, di‐, tri‐ and tetra‐substituted perylene derivatives with strong bis(para‐methoxyphenyl)amine (DPA) donors at the uncommon 2,5,8,11‐positions. The properties of our new donor‐substituted perylenes were studied in detail to establish a structure‐property relationship. Interesting trends and unusual properties are observed for this series of new perylene derivatives, such as a decreasing charge transfer (CT) character with increasing number of DPA moieties and individual reversible oxidations for each DPA moiety. Thus, (DPA)‐Per possesses one reversible oxidation while (DPA)\(_{4}\)‐Per has four. The mono‐ and di‐substituted derivatives display unusually large Stokes shifts not previously reported for perylenes. Furthermore, transient absorption measurements of the new derivatives reveal an excited state with lifetimes of several hundred microseconds, which sensitizes singlet oxygen with quantum yields of up to 0.83. KW - borylation KW - intersystem crossing KW - luminescence KW - polycyclic aromatic hydrocarbon KW - triarylamine Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-217835 VL - 26 IS - 52 SP - 12050 EP - 12059 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 - THES A1 - Ming, Wenbo T1 - Synthesis of α‑Aminoboronates and PBP Pincer Palladium Boryl Complexes T1 - Synthese von α-Aminoboronaten und PBP-Pincer-Palladium-Boryl-Komplexen N2 - The first Borono-Strecker reaction has been developed to synthesize α-aminoboronates via a multicomponent reaction of readily available carbonyl compounds (aldehydes and ketones), amines and B2pin2. The preparation of α-amino cyclic boronates can be achieved via multicomponent coupling of salicylaldehydes, amines, and B2(OH)4. In addition, the diazaborole-based PBP pincer palladium chloride and the diazaborole-based PBP pincer palladium trifluoromethanesulfonate complexes were synthesized and fully characterized for the first time, and used as catalysts for Suzuki-Miyaura cross-coupling reactions. N2 - Wurde die erste Borono-Strecker Reaktion zur Synthese von α-Aminoboronaten, mittels einer Multikomponenten-Reaktion aus leicht zugänglichen Carbonylverbindungen (Aldehyde und Ketone), Aminen und B2pin2, entwickelt. Außerdem gelang die Darstellung von zyklischen α-Aminoboronaten durch Multikomponenten-Kupplung von leicht zugänglichen Salicylaldehyden, Aminen und B2(OH)4. Des Weiteren wurde der Diazaborol-basierte PBP Pincer Palladium Chlorid Komplex und der Diazaborol-basierte PBP Pincer Palladium Trifluoromethylsulfonat Komplex erstmalig synthetisiert, vollständig charakterisiert und als Katalysator für Suzuki-Miyaura Kreuzkupplungen eingesetzt. KW - borylation KW - α-aminoboronates KW - PBP pincer palladium complexes KW - cross-coupling Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-198323 ER - TY - INPR A1 - Cid, Jessica A1 - Hermann, Alexander A1 - Radcliffe, James E. A1 - Curless, Liam D. A1 - Braunschweig, Holger A1 - Ingleson, Michael J. T1 - Synthesis of Unsymmetrical Diboron(5) Compounds and Their Conversion to Diboron(5) Cations T2 - Organometallics N2 - Reaction of bis-catecholatodiboron-NHC adducts, B\(_2\)Cat\(_2\)(NHC), (NHC = IMe (tetramethylimidazol-2-ylidene), IMes (1,3-dimesitylimidazol-2-ylidene) or IDIPP (1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene)) with BCl3 results in the replacement of the catecholato group bound to the four coordinate boron with two chlorides to yield diboron(5) Lewis acid-base adducts of formula CatB-BCl\(_2\)(NHC). These compounds are precursors to diboron(5) monocations, accessed by adding AlCl\(_3\) or K[B(C\(_6\)F\(_5\))\(_4\)] as halide abstraction agents in the presence of a Lewis base. The substitution of the chlorides of CatB-BCl\(_2\)(NHC) for hydrides is achieved using Bu\(_3\)SnH and a halide abstracting agent to form 1,1-dihydrodiboron(5) compounds, CatB-BH\(_2\)(NHC). Attempts to generate diboron(4) monocations of formula [CatB-B(Y)(NHC)]\(^+\) (Y = Cl or H) led to the rapid formation of CatBY. KW - diboron KW - boronium cations KW - boron KW - Lewis acids KW - electrophiles Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-164299 N1 - This document is the unedited Author's version of a Submitted Work that was subsequently accepted for publication in Organometallics, copyright © 2018 American Chemical Society after peer review. To access the final edited and published work see dx.doi.org/10.1021/acs.organomet.8b00288 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 - THES A1 - Gluyas, Josef Bheinn George T1 - Synthesis of Silicon-Based Drugs and Odourants T1 - Synthese von Silicium-haltigen Wirkstoffen N2 - This thesis concerns (i) the synthesis and olfactory characterisation of silicon-containing analogues of the musk odourant phantolide, (ii) the synthesis and pharmacological investigation of silicon-containing analogues of retinoids of the EC23 and TTNN type and (iii) the attempted syntheses of silicon-containing analogues of the antipsychotic penfluridol and the antidiarrhoeal agent loperamide. All target compounds and intermediates were characterised by multinuclear NMR studies (1H, 13C, 15N, 19F, 29Si) and elemental analyses or high-resolution mass spectrometry. Additionally, some of these compounds were characterized by single crystal X-ray diffraction studies. N2 - Die vorliegende Arbeit beschreibt (i) die Synthese und olfaktorische Charakterisierung von siliciumhaltigen Derivaten des Moschus-Riechstoffes Phantolid, (ii) die Synthese und pharmakologische Charakterisierung siliciumhaltiger Derivate von Retinoiden des EC23- und TTNN-Typs, und (iii) die Versuche zur Darstellung siliciumhaltiger Analoga der Wirkstoffe Penfluridol und Loperamid. Die Charakterisierung der Zielverbindungen sowie aller auftretenden Zwischenstufen erfolgte durch NMR-Spektroskopie (1H, 13C, 15N, 19F, 29Si) und Elementaranalyse bzw. hochaufgelöste Massenspektrometrie. Außerdem wurden einige der Verbindungen durch Kristallstrukturanalyse charakterisiert. KW - Silicium KW - Arzneimittel KW - Duftstoff KW - Präparative organische Chemie KW - Drugs KW - odourants KW - organic chemistry KW - synthesis silicon KW - organosilicon Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-72182 ER - TY - THES A1 - Daiß, Jürgen Oliver T1 - Synthesis of sila-analogs and silicon-containing derivatives of drugs and development and application of the Si-2,4,6-trimethoxyphenyl moiety as a novel protecting group in organosilicon chemistry T1 - Synthese von Sila-Analoga und siliciumhaltigen Derivaten von Wirkstoffen und Entwicklung und Anwendung der Si-2,4,6-Trimethoxyphenyl-Gruppe als neuartige Schutzgruppe in der Organosilicium-Chemie N2 - The present work describes the synthesis of sila-venlafaxine, disila-bexarotene, disila-AG-045572 (disila-CMPD1), a series of silicon-based allosteric modulators of muscarinic receptors, and a partial synthesis of sila-gabapentin. Crystal structure data of rac-sila-venlafaxine hydrochloride, (R)-sila-venlafaxine hydrobromide, bexarotene, disila-bexarotene, and disila-AG-045572 (disila-CMPD1) are included. Studies on the biological activities of sila-venlafaxine and of silicon-based allosteric modulators of muscarinic receptors are discussed. The Si-2,4,6-trimethoxyphenyl (Si-2,4,6-TMOP) moiety is described as a novel, acid-labile protecting group in organosilicon chemistry. The synthesis of chlorotris(chloromethyl)silane and tris(chloromethyl)methoxysilane is described. N2 - Die vorliegende Arbeit beschreibt die Synthese von Sila-Venlafaxin, Disila-Bexaroten, Disila-AG-045572 (Disila-CMPD1), einer Reihe allosterer Modulatoren von Muscarin-Rezeptoren auf Silicium-Basis sowie eine Teilsynthese von Sila-Gabapentin. Kristallstrukturdaten von rac-Sila-Venlafaxin Hydrochlorid, (R)-Sila-Venlafaxin Hydrobromid, Bexaroten, Disila-Bexaroten und Disila-AG-045572 (Disila-CMPD1) sind enthalten. Untersuchungen der biologischen Aktivität von Sila-Venlafaxin und allosterer Modulatoren von Muscarin-Rezeptoren auf Silicium-Basis werden diskutiert. Die Si-2,4,6-trimethoxyphenyl-Gruppe (Si-2,4,6-TMOP)wird als neuartige säurelabile Scutzgruppe für die Organosilicium-Chemie beschrieben. Die Synthese von Chlortris(chlormethyl)silan und Tris(chlormethyl)methoxysilan wird ebenfalls beschrieben. KW - Wirkstoff KW - Siliciumorganische Verbindungen KW - Bioisosterie KW - Muscarin KW - Antagonist KW - Silicium KW - Bioisosterie KW - Schutzgruppe KW - Venlafaxin KW - Bexaroten KW - Silicon KW - bioisosterism KW - protecting group KW - venlafaxine KW - bexarotene Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-11187 ER - TY - JOUR A1 - Jarre, Gerald A1 - Heyer, Steffen A1 - Memmel, Elisabeth A1 - Meinhardt, Thomas A1 - Krueger, Anke T1 - Synthesis of nanodiamond derivatives carrying amino functions and quantification by a modified Kaiser test JF - Beilstein Journal of Organic Chemistry N2 - Nanodiamonds functionalized with different organic moieties carrying terminal amino groups have been synthesized. These include conjugates generated by Diels–Alder reactions of ortho-quinodimethanes formed in situ from pyrazine and 5,6-dihydrocyclobuta[d]pyrimidine derivatives. For the quantification of primary amino groups a modified photometric assay based on the Kaiser test has been developed and validated for different types of aminated nanodiamond. The results correspond well to values obtained by thermogravimetry. The method represents an alternative wet-chemical quantification method in cases where other techniques like elemental analysis fail due to unfavourable combustion behaviour of the analyte or other impediments. KW - amino groups KW - carbon nanomaterials KW - Diels–Alder reaction KW - Kaiser test KW - nanodiamond KW - pyrazine Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-118199 SN - 1860-5397 VL - 10 ER - TY - THES A1 - Pai, Sandesh T1 - Synthesis of manganese tricarbonyl PhotoCORM conjugates - from small molecules to peptides and dendrimers T1 - Synthese von Mangan(I)-Tricarbonyl PhotoCORM Konjugaten - von kleinen Molekülen hin zu Peptid- und Dendrimer-Konjugaten N2 - Novel manganese(I) tricarbonyl complexes based on the tridentate bis(pyrazolyl)ethylamine (bpea) ligand with pendant functionalized phenyl groups were synthesized and conjugated to biological carrier systems like peptides and dendrimers. Their dark stability establishes them as CORM prodrugs. The monomers show a faster CO-release compared to the peptide and dendrimer conjugates. However, both monomers and peptide conjugates release two equivalents of CO upon photoactivation at 365 nm. The dendrimer conjugates can deliver up to seven equivalents of CO due to the higher number of Mn(CO)3 moieties per molecular unit. In the future, the biological activity of the conjugates needs to be further explored to establish the targeted delivery of CO to cells and tissues. N2 - Das Ziel dieser Doktorarbeit war die Synthese von Mangan(I)-Tricarbonylkomplexen als neuartige photoaktivierbare CO-releasing molecules (PhotoCORMs) und ihrer Peptid- und Dendrimer-Konjugate als Trägersysteme für das targeted delivery von Kohlenstoffmonoxid in biologischen Systemen. Dafür wurde eine Serie von sechs Mn(I)-Tricarbonylkomplexen basierend auf dem Bis(pyrazolyl)ethylamin-Liganden (bpea) hergestellt welche einen para-substituierten Phenylring mit einer peripheren Iod- oder Alkin-Gruppe enthalten. Diese sollten eine Konjugation an Biomoleküle mittels Sonogashira- oder CuAAC-"click"-Reaktion ermöglichen. Alle Verbindungen wurden in guter Ausbeute mit hoher Reinheit erhalten. Die Einkristall-Röntgenstrukturen der Verbindungen mit Iod- und Alkin- Substituenten belegen die faciale Koordination des tridentaten bpea-Liganden an die Mn(CO)3-Gruppe. Alle Komplexe zeigen bei Lichtausschluß eine sehr gute Stabilität in Dimethylsulfoxid-Lösung über bis zu 14 h, die Photoaktivierung bei 365 nm führt dagegen zur Freisetzung von zwei Äquivalenten Kohlenstoffmonoxid pro Mol Komplex. Obwohl die Verbindungen MLCT-Banden um 350 nm ausweisen, können sie auch noch bei 410 nm stimuliert werden, was für biologische Anwendungen vorteilhaft ist. Die photoinduzierte CO-Freisetzung wurde auch mittels IR- Spektroskopie in Lösung verfolgt. Die Banden neu auftretender Intermediate konnten dabei mit Hilfe von DFT-Rechnungen zugeordnet werden und belegen die Bildung von cis-Mn(CO)2-Spezies nach der Freisetzung eines ersten Äquivalents Kohlenstoffmonoxid. Die CO-Freisetzung wurde auch mit Hilfe eines des fluoreszenten CO-Indikators COP-1 untersucht. Während bei Inkubation im Dunkeln auch bei einem 10:1- Verhältnis von CORM zu COP-1 kein Signal beobachtet werden konnte, führt die lichtinduzierte CO-Freisetzung zu einem konzentrationsabhängigen Anstieg der Fluoreszenz. Die photoaktivierte CO-Freisetzung wurde auch in lebenden HUVEC- Zellen untersucht. In der überstehenden Lösung konnte ein Ansteig der COP-1- Fluoreszenz relativ zum Hintergrund um einen Faktor von 15 beobachtet werden während die Intensititäszunahme für die Zellfraktion nur bei etwa 5-fach lag. Dies könnte auf eine nur geringe Zellaufnahme von COP-1 oder CORM oder beider Moleküle zurückzuführen sein. Die Untersuchungen etablieren die bpea-Komplexe aber eindeutig als photoaktivierbare CO-releasing molecules (PhotoCORMs). Peptide sind attraktive Trägersysteme für das cellular delivery von Metallkomplexen. Als Modell für solche Trägerpeptide wurde die transforming growth factor -bindende (TGF-) Sequenz durch Festphase-Peptidsynthese hergestellt. Die Anknüpfung von [Mn(bpea)(CO)3]+ an das Peptid über eine periphere Funktionalität des Liganden über eine Sonogashira-Kreuzkupplung bzw. CuAAC-"Click"-Reaktion sollte in einer Postlabelling-Strategie erfolgen. Obwohl verschiedene Bedingungen getestet wurden führte erstere Reaktion jedoch nicht zum Erfolg. Die CuAAC-Reaktion zwischen einem Alkin-funktionalisierten Metallkomplex und einem Azid-terminierten Peptid führt dagegen zu dem gewünschten N-terminal funktionalisierten Konstrukt, welches über eine Triazolgruppe zusammengehalten wird. Trotzdem zeigte das Konjugat auf Grund einer Imin-Bindung im bpea-Liganden eine Tendenz zur Hydrolyse in wässrigem Medium. Als Alternative wurde daher die milde und katalysatorfreie Oxim-Ligation in Verbindung mit einem stabileren, Amin- anstatt Imin-basierten Liganden untersucht. Die Kupplung zwischen einem Aminoxyessigsäure- terminierten TGF--bindenden Peptid und einem Aldehyde-funktionalisierten Metallkomplex ergab das gewünschte Konjugat in guter Ausbeute mit höher Stabilität. Für bis zu 96 h konnte selbst bei wiederholten freeze-thaw-Zyklen keinerlei Zersetzung beobachtet werden. Das CO-Freisetzungsverhalten von Konjugat und Stammverbindung war identisch, die Photoaktivierung bei 365 nm führt für beide innerhalb von 1–1.5 h zur Freisetzung von zwei Äquivalenten CO pro Mol Komplex. Die Oxim-Ligation konnte so als milder Zugang zu CORM-Peptidkonjugaten etabliert werden. Dendrimere sind Baum-artige Moleküle mit einer Vielzahl von Funktionalitäten in der Peripherie, die eine Modifikation mit Metallkomplexen für biologische Anwendungen erlauben. Von besonderem Interesse ist hierbei die Anreicherung in Tumorgewebe auf Grund des enhanced permeability and retention(EPR)-Effekts. Diaminobutan(DAB)- und Polyamidoamin(PAMAM)-Dendrimere der Generation 1 mit vier terminalen Amingruppen wurden daher in einer Schiff-Base-Kondensation mit Aldehyd-funktionalisierten Mn(bpea)(CO)3-Komplexen umgesetzt. Die erhaltenten Metallkomplex-Dendrimer-Konjugate waren in wässriger DMSO-Lösung im Dunkeln für bis zu 14 h stabil. Die Photolyse zeigte eine geringfügig schnellere CO- Freisetzung für das DAB- vs. dem PAMAM-Dendrimer. Eine Anregung bei 410 nm führte zu einer deutlich langsameren CO-Freisetzung gegenüber der 365 nm- Belichtung. Mit Hilfe des Myoglobin-Assays konnte gezeigt werden daß auf diese Weise 50–55% der Gesamtzahl an CO-Liganden aus dem System freigesetzt werden kann. Im Rahmen der vorliegenden Arbeit wurden neue Mangan(I)tricarbonyl-Komplexe auf der Basis des tridentaten Bis(pyrazolyl)ethylamin(bpea)-Liganden hergestellt, die in der Peripherie funktionalisierte Phenylgruppen tragen, welche die Anknüpfung an biologische Trägersysteme auf der Basis von Peptiden und Dendrimeren erlauben. Auf Grund ihrer Stabilität unter Lichtausschluß sind diese Verbindungen als CORM- Prodrugs geeignet. Die Photoaktivierung bei 365 nm führt zur Freisetzung von zwei Äquivalenten CO pro Mol CORM, wobei die Stammverbindungen eine etwas schnellere Kinetik aufweisen als die Konjugate. Insbesondere die Dendrimer- basierten Systeme können auf Grund der hohen Anzahl von Mn(CO)3-Gruppen bis zu sieben CO pro Mol Konjugat liefern. Für die Zukunft bleibt zu zeigen ob diese Konjugate eine zelluläre Anreicherung für biologische Anwendungen erlauben wird. KW - Mangankomplexe KW - carbon monoxide KW - Tricarbonylverbindungen KW - Kohlenmonoxid KW - manganese tricarbonyl complexes KW - peptide conjugates KW - dendrimer conjugates KW - myoglobin assay KW - oxime ligation KW - CuAAC 'click' reaction KW - Sternpolymere KW - PhotoCORMs KW - CORMs Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-104824 ER - TY - JOUR A1 - Ferger, Matthias A1 - Berger, Sarina M. A1 - Rauch, Florian A1 - Schönitz, Markus A1 - Rühe, Jessica A1 - Krebs, Johannes A1 - Friedrich, Alexandra A1 - Marder, Todd B. T1 - Synthesis of Highly Functionalizable Symmetrically and Unsymmetrically Substituted Triarylboranes from Bench-Stable Boron Precursors JF - Chemistry—A European Journal N2 - A novel and convenient methodology for the one-pot synthesis of sterically congested triarylboranes by using bench-stable aryltrifluoroborates as the boron source is reported. This procedure gives systematic access to symmetrically and unsymmetrically substituted triarylboranes of the types BAr\(_{2}\)Ar’ and BArAr'Ar’’, respectively. Three unsymmetrically substituted triarylboranes as well as their iridium-catalyzed C−H borylation products are reported. These borylated triarylboranes contain one to three positions that can subsequently be orthogonally functionalized in follow-up reactions, such as Suzuki-Miyaura cross-couplings or Sonogashira couplings. KW - synthetic methods KW - boranes KW - borylation KW - chromophore KW - functionalization Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256827 VL - 27 IS - 35 ER - TY - INPR A1 - Brückner, Tobias A1 - Arrowsmith, Merle A1 - Heß, Merlin A1 - Hammond, Kai A1 - Müller, Marcel A1 - Braunschweig, Holger T1 - Synthesis of fused B,N-heterocycles by alkyne cleavage, NHC ring-expansion and C-H activation at a diboryne T2 - Chemical Communications N2 - The addition of alkynes to a staturated N-heterocyclic carbene (NHC)-supported diboryne results in spontaneous cycloaddition, with complete B≡B and C≡C triple bond cleavage, NHC ring- expansion and activation of a variety of C-H bonds, leading to the formation of complex mixtures of fused B,N-heterocycles. KW - heterocycles KW - alkynes KW - boron KW - carbenes Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184899 N1 - This is the pre-peer reviewed version of the following article: Chem. Commun., 2019,55, 6700-6703, which has been published in final form at doi:10.1039/C9CC02657F ER - TY - JOUR A1 - Ansell, Melvyn B. A1 - Kostakis, George E. A1 - Braunschweig, Holger A1 - Navarro, Oscar A1 - Spencer, John T1 - Synthesis of functionalized hydrazines: facile homogeneous (N-heterocyclic carbene)-palladium(0)-catalyzed diboration and silaboration of azobenzenes JF - Advanced Synthesis & Catalysis N2 - The bis(N-heterocyclic carbene)(diphenylacetylene)palladium complex Pd(ITMe)\(_2\)(PhCCPh)] (ITMe=1,3,4,5-tetramethylimidazol-2-ylidene) acts as a highly active pre-catalyst in the diboration and silaboration of azobenzenes to synthesize a series of novel functionalized hydrazines. The reactions proceed using commercially available diboranes and silaboranes under mild reaction conditions. KW - Palladium-catalyzed silaboration KW - B-B bond KW - molecular-structure KW - terminal alkynes KW - crystal-structure KW - alkenes KW - complexes KW - mechanism KW - boron KW - design KW - azobenzenes KW - dilaboration KW - N-heterocyclic carbenes KW - palladium KW - silaboration Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186582 VL - 358 IS - 23 ER - TY - JOUR A1 - Brückner, Tobias A1 - Heß, Merlin A1 - Stennett, Tom E. A1 - Rempel, Anna A1 - Braunschweig, Holger T1 - Synthesis of Boron Analogues of Enamines via Hydroamination of a Boron-Boron Triple Bond BT - Dedicated to Professor Wolfgang Kaim on the occasion of his 70th birthday JF - Angewandte Chemie, International Edition N2 - An N-heterocyclic-carbene-stabilized diboryne undergoes rapid, high-yielding and catalyst-free hydroamina- tion reactions with primary amines, yielding 1-amino-2-hydro- diborenes, which can be considered boron analogues of enamines. The electronics of the organic substituent at nitrogen influence the structure and further reactivity of the diborene product. With electron-rich anilines, a second hydroamination can occur at the diborene to generate 1,1-diamino-2,2-dihy- drodiboranes. With isopropylamine, the electronic influence of the alkyl substituent upon the diborene leads to an unprece- dented boron-mediated intramolecular N-dearylation reaction of an N-heterocyclic carbene unit. KW - boron KW - diborynes KW - diborenes KW - DFT KW - enamines KW - hydroamination KW - multiple bonds Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-240669 VL - 60 IS - 2 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 - Krebs, Johannes A1 - Haehnel, Martin A1 - Krummenacher, Ivo A1 - Friedrich, Alexandra A1 - Braunschweig, Holger A1 - Finze, Maik A1 - Ji, Lei A1 - Marder, Todd B. T1 - Synthesis and Structure of an o-Carboranyl-Substituted Three-Coordinate Borane Radical Anion JF - Chemistry—A European Journal N2 - Bis(1-(4-tolyl)-carboran-2-yl)-(4-tolyl)-borane [(1-(4-MeC\(_{6}\)H\(_{4}\))-closo-1,2-C\(_{2}\)B\(_{10}\)H\(_{10}\)-2-)\(_{2}\)(4-MeC\(_{6}\)H\(_{4}\))B] (1), a new bis(o-carboranyl)-(R)-borane was synthesised by lithiation of the o-carboranyl precursor and subsequent salt metathesis reaction with (4-tolyl)BBr\(_{2}\). Cyclic voltammetry experiments on 1 show multiple distinct reduction events with a one-electron first reduction. In a selective reduction experiment the corresponding paramagnetic radical anion 1\(^{.−}\) was isolated and characterized. Single-crystal structure analyses allow an in-depth comparison of 1, 1\(^{.−}\), their calculated geometries, and the S\(_{1}\) excited state of 1. Photophysical studies of 1 show a charge transfer (CT) emission with low quantum yield in solution but a strong increase in the solid state. TD-DFT calculations were used to identify transition-relevant orbitals. KW - Wade’s rules KW - carborane KW - charge transfer KW - radical KW - threecoordinate boron Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256841 VL - 27 IS - 31 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 - THES A1 - Hagspiel, Stephan Alexander T1 - Synthesis and Reactivity of Pseudohalide-substituted Boranes and Borylenes T1 - Synthese und Reaktivität Pseudohalogenid-substituierter Borane und Borylene N2 - This work involves the synthesis and reactivity of pseudohalide-substituted boranes and borylenes. A series of compounds of the type (CAAC)BR2Y (CAAC = cyclic alkyl(amino)carbene; R = H, Br; Y = CN, NCS, PCO) were prepared first. The two-electron reduction of (CAAC)BBr2Y (Y = CN, NCS) in the presence of a second Lewis base L (L = N-heterocyclic carbene) resulted in the formation of the corresponding doubly Lewis base-stabilized pseudohaloborylenes (CAAC)(L)BY. These borylenes show versatile reactivity patterns, including their oxidation to the corresponding radical cations, coordination via the respective pseudohalide substituent to group 6 metal carbonyl complexes, as well as a boron-centered protonation with Brønsted acids to boronium cations. Reduction of (CAAC)BBr2(NCS) in the absence of a second donor ligand, led to the formation of boron-doped thiazolothiazoles via reductive dimerization of two isothiocyanatoborylenes. These B,N,S-heterocycles possess a low degree of aromaticity as well as interesting photophysical properties and can furthermore be protonated as well as hydroborated. Additionally, CAAC adducts of the parent boraphosphaketene (CAAC)BH2(PCO) could be prepared, which readily reacted with boroles [Ph4BR'] (R' = aryl) via decarbonylation in a ring expansion reaction. The obtained 1,2-phosphaborinines represent B,P-isosteres of benzene and consequently could be coordinated to metal carbonyl complexes of the chromium triade via η6-coordination, resulting in new half-sandwich complexes thereof. N2 - Diese Arbeit beinhaltet die Synthese und Reaktivität von Pseudohalogenid-substituierten Boranen und Borylenen. Dabei wurde zunächst eine Reihe an Verbindungen des Typs (CAAC)BR2Y (CAAC = cyclisches Alkyl(amino)carben; R = H, Br; Y = CN, NCS, PCO) dargestellt. Die Zweielektronenreduktion von (CAAC)BBr2Y (Y = CN, NCS) in der Gegenwart einer weiteren Lewis-Base L (L = N-heterocyclisches Carben) resultierte in der Bildung der entsprechenden zweifach Lewis-Basen-stabilisierten Pseudohalogenborylene (CAAC)(L)BY. Diese Borylene zeigen eine vielseitige Folgechemie, wobei sie zu den korrespondierenden Radikalkationen oxidiert, über den jeweiligen Pseudohalogenidsubstituenten an Metallcarbonylkomplexe der Gruppe 6 koordiniert sowie mit Brønsted-Säuren Bor-zentriert zu Boroniumkationen protoniert werden können. Die Reduktion von (CAAC)BBr2(NCS) in Abwesenheit eines weiteren Donorliganden führte über die reduktive Dimerisierung zweier Isothiocyanatoborylene zur Bildung Bor-dotierter Thiazolothiazole. Diese B,N,S-Heterocyclen verfügen über ein geringes Ausmaß an Aromatizität sowie interessante photophysikalische Eigenschaften, und können darüber hinaus protoniert wie auch hydroboriert werden. Des Weiteren konnten CAAC-Addukte des Stammboraphosphaketens (CAAC)BH2(PCO) dargestellt werden, die bereitwillig unter Decarbonylierung in einer Ringerweiterungsreaktion mit Borolen [Ph4BR‘] (R‘ = Aryl) reagieren. Die erhaltenen 1,2-Phosphaborinine stellen B,P-Isostere des Benzols dar und konnten folglich über eine η6-Koordination an Metallcarbonylkomplexe der Chromtriade koordiniert werden, woraus neue Halbsandwichkomplexe dieser resultierten. KW - Borylene KW - Pseudohalogenide KW - Heteroaromaten KW - boron KW - pseudohalides KW - heterocycles KW - aromaticity KW - DFT KW - Bor KW - Pseudohalogenide KW - Heterocyclen KW - Aromatizität KW - DFT Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-249459 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 - Kuehn, A. A1 - Burschka, Christian A1 - Werner, H. T1 - Synthesis and molecular structure of C\(_5\)H\(_5\)(P-/-Pr\(_3\))Pd(η\(^1\), η\(^3\)-C\(_3\)H\(_4\))Pd(P-/-Pr\(_3\))Br: a compound formed through insertion of allene into a metal-metal bond\(^1\) N2 - No abstract available KW - Chemie Y1 - 1982 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-46592 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 - JOUR A1 - Hengelsberg, H. A1 - Tacke, Reinhold A1 - Fritsche, K. A1 - Syldatk, C. A1 - Wagner, F. T1 - Synthesis and enantioselective enzymatic hydrolysis of rac-dimethylphenyl[1-(phenylacetamido)- ethyl]silane N2 - Racemic dimethylphenyl(l-(phenylacetamido)ethyl)silane [rac-5) has been made by a four-step synthesis starting from (chloromethyl)dimethylphenylsilane [PhMe\(_2\)SiCH2Cl (1) ~ PhMe\(_2\)SiCH(Cl)Me (rac-2) - PhMe\(_2\)SiCH(l)Me (rac-3) - PhMe2SiCH(NH2)Me (rac-4) ~ PhMe\(_2\)SiCH[N(H)C(O)CH\(_2\)Ph]Me ( rac-5); total yield 41% ). Enantioselective enzymatic hydrolysis of rac-5, catalyzed by immobilized penicillin G acylase (E.C. 3.5.1.11) from Escherichia coli 5K (pHM 12), gave (R)-(1- aminoethyl)dimethylphenylsilane [( R )-4] in 40% yield with an enantiomeric purity of 92% ee. KW - Anorganische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64153 ER - TY - THES A1 - Pfeiffer, Hendrik T1 - Synthesis and biological activity of molybdenum carbonyl complexes and their peptide conjugates T1 - Synthese und biologische Aktivität von Molybdäncarbonylkomplexen und ihren Peptidkonjugaten N2 - Molybdenum carbonyl complexes with different polypyridyl coligands were prepared and conjugated to peptides by mild bioorthogonal coupling reactions like the oxime ligation and a catalyst-free azide-alkyne click reaction utilized for the first time in such a context. The biological activity of some of the new complexes and conjugates, including their CO release properties, cytotoxicity on human cancer cells, and mode of induction of cell death was studied. N2 - Molybdäncarbonylkomplexe mit verschiedenen Polypyridyl-Coliganden wurden synthetisiert und erstmalig in diesem Zusammenhang mittels milder bioorthogonaler Kupplungsreaktionen wie der Oxim-Ligation und der katalysatorfreien Azid- Alkin Click-Reaktion mit Peptiden verknüpft. Die biologische Aktivität einiger der neuen Komplexe und Konjugate, wozu deren Fähigkeit CO freizusetzen, die Cytotoxizität auf menschliche Krebszellen und die Induktion des Zelltods zählen, wurde untersucht. KW - Molybdäncarbonyle KW - Biologische Aktivität KW - Molybdän KW - CORM KW - Cytotoxizität KW - Bioorganometallchemie KW - molybdenum KW - CORM KW - cytotoxicity KW - bioorganometallic chemistry Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-71199 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 - 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 - Arbuznikov, Alexey V. A1 - Plakhutin, A. B. T1 - Symmetric vector coupling coefficients for atomic non-Roothaan states in the d\(^N\) configuration N2 - No abstract available Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-47062 ER - TY - THES A1 - Graf, Dominic T1 - Surface and active site modification of proteins with organometallic markers and inhibitors T1 - Modifikation von Proteinen an der Oberfläche und im aktiven Zentrum durch organometallische Marker und Inhibitoren N2 - After implementing a reliable mass spectrometry based kinetic study the indole conjugation with different organometallic indoles led to questions about the electronical and sterical influences on reactivity. The substitution pattern of the ferrocene functionalized indoles at the six-membered ring determines the electron density on the C3 atom, which reacts with the formed Schiff base. Since the experimental results showed the exact opposite trend, covalent docking studies were performed elucidating the importance of surface interactions. These studies were in harmony with the experimental results and determined lysine 33 as most preferable conjugation site as well as substitution in 6-position as most favourable pattern. The amine motif in compounds 6, 7 and 8 proofed to be easily fragmented by the ESI method used. The amide linker in 10 remains intact but shows a lower conversion. Those two inherent characteristics are however preferable for well-defined and site-specific bioconjugation. The synthesis and evaluation of piano stool complex derivatives with manganese and rhenium metal centre 15, 16, 18 and 22 gave additional guidance by the interpretation of applicable structural motifs. The electron-withdrawing carbonyl groups lead to the hindrance of fulvene formation and thus to no fragmentation as seen with the ferrocene group. The total conversion is low compared to 8, only 22 shows a good enough conversion to mainly monoconjugate of 45% and a possible radio-labelling application as 99mTc analogue. As consequence manganese complexes with a stable facial tricarbonyl unit and a tridentate chelator with 4-, 5- and 6-substituted aminomethylindole conjugated through an amide bond were synthesized and consecutively evaluated. The resulting organometallic indole derivatives 29, 30 and 31 all showed a total conversion around 40% similar to 16, but at the same time a rate constant in the range of 10-4 s-1 like the organic indole. Besides the similar conversion, the rate constants followed the trend of the 6-substituted derivative as fastest and then 5- and 4- substituted derivative with decreasing reactivity. For underlining the usage as technetium label for the best out of the series 31, a rhenium analogue was prepared. The resulting compound 32 was especially interesting, because the conversion was even higher than the 70% of 8 with a total of 88%. Additionally, the rate constant was a tenfold higher as well. This rendered compound 32 as best possible 99mTc analogue for further application as radio-label. After the success of 32 and realizing the sterical benefits resulting from the flexible tridentate ligand-system, substitution at the five-membered ring was explored. The complexes 33, 34 and 35 are based on indole-2-carboxylic acid and with the difference of the length of the alkyl spacer between amide and complex to probe for the influence and sterical hindrance, but all three derivatives showed no conjugation which excludes functionalization in 2-position. As the C3 is used for the actual bioconjugation, the last possible derivatization was realized on the indole-N1 by using 1-(3-bromopropyl)indole as building block during the synthesis of the ligand-system. The corresponding manganese 36 and rhenium 37 complexes both showed similar properties of a moderate conversion like 22 and a rate constant in the range of 10-5 s-1. In conclusion the rhenium complex 32 with the 6-substitution pattern at the tridentate indole-bearing ligand remains the most promising structure. The here developed liquid chromatography coupled mass spectrometry-based assay for the determination of inhibitory activity of drug candidates against the 3CLpro of the sever acute respiratory syndrome coronavirus type 2 was successfully implemented and especially designed to give, due to the available absorption spectra and corresponding mass traces, further insight in the otherwise through fluorescence resonance energy transfer-based assays neglected influences on the inhibition results. Starting with a literature-known quinolone containing covalent inhibitor 42 an N1-methylated derivative 43 and their analogues 44 and 45 in which the benzoic acid was exchanged for ferrocene carboxylic acid were synthesized. The inhibition of 3CLpro was evaluated by the concentration of initial 15mer peptide left after incubation and for that purpose the for 280 nm defined molar attenuation coefficient of (26.41±0.59) L*mol-1*cm-1 determined and used. The results showed a reaction of DL dithiothreitol with the less stable benzoic acid esters leading to a moderate inhibitory effect. The methylation in N1-position showed an increase in stability. The methylated and with ferrocene carboxylic acid functionalized derivative showed a complete inhibition during the timeframe of the assay. In search of a fluorescent and therefore traceable inhibitor, 4 hydroxycoumarin was used to synthesize the analogue with benzoic acid 49 and ferrocene carboxylic acid 50. Both derivatives were less stable than their analogues but exhibited the same trend of a more stable ferrocene-derived compound, which exerted a higher inhibition as well. After preparing and testing the model thioester 53 and showing an inactivation of the established inhibitor ebselen, it was concluded that the reaction with DL dithiothreitol reduces the concentration of active intact inhibitor and therefore decreases the inhibition rate during the assay. The next step was proofing the reducing agent as non-essential for the fast assay conducted in a timeframe of 5 min to circumvent the negative influence of DL dithiothreitol. By excluding every inhibition-altering part, the resulting method is the perfect tool for precise statements in relation of inhibitory activity. Then the inhibition assay was repeated for ebselen and the best out of the here introduced organometallic inhibitors 45. Both give equivalent results of a complete inhibition during the measurement. The implemented liquid chromatography coupled mass spectrometry-based assay has many advantages over the fluorescence resonance energy transfer-based assays in which all the information and insight accumulated by the evaluation of uv/vis traces and mass spectra are not available leading to wrong or deviating results regarding the inhibitory capacity of inhibitor candidates. N2 - Nach der erfolgreichen Implementierung einer auf Massenspektrometrie basierenden Methode, um kinetische Studien über die Indolkonjugation durchzuführen, kamen Fragen über die elektronischen und sterischen Einflüsse auf die Reaktivität auf. Das Substitutionsmuster der Ferrocen-funktionalisierten Indole am sechsgliedrigen Ring bestimmt die Elektronendichte am C3-Atom, welches wiederum mit der zuvor entstandenen Schiffbase reagiert. Da die experimentellen Daten einen der Elektronendichte entgegengesetzten Trend aufwiesen, wurden Docking-Studien durchgeführt, um die Einflüsse der Wechselwirkungen mit der Proteinoberfläche näher zu beleuchten. Diese entsprachen den experimentellen Werten und zeigten, dass Lysin 33 die bevorzugte Konjugationsstelle ist und dass die Substitution in 6-Position die energetisch günstigste darstellt. Das sekundäre Amin der Verbindungen 6, 7 und 8 wurde unter den ESI-Bedingungen leicht fragmentiert. Die Amid-Bindung von 10 dagegen bleibt intakt und ein langsamerer Umsatz, welcher für einen wohl definierten Umsatz sorgt, wurde beobachtet. Die Synthese und Evaluation der Halbsandwich-Komplexe 15, 16, 18 und 22 gab zusätzlichen Aufschluss über die strukturellen Einflüsse. Die elektronenziehenden Carbonyle behindern die Bildung der Fulvene, welche für die Ferrocen-Derivate beobachtet worden war. Der Gesamtumsatz ist vergleichsweise gering und nur Substanz 22 zeigt eine annehmbare Konversion von 45% an Monokonjugat auf, welches sie wiederum für den Einsatz als 99mTc-Analog qualifiziert. Als direkte Konsequenz wurden Mangankomplexe mit einer stabilen facialen Tricarbonyl-Einheit und einem Indol beinhaltenden tridentaten Liganden synthetisiert. Dies wurde für die 4-, 5- und 6-Substitution durchgeführt um die Komplexe 29, 30 und 31 zu erhalten. Alle drei zeigten eine Konversion von ungefähr 40% und lagen mit einer Ratenkonstante von 10-4 s-1 in dem Bereich des organischen Indols. Die Ratenkonstanten folgten hingegen wiederum dem Trend der begünstigten 6-Position, gefolgt von der 5- und dann 4-Position. Um einen Verglich zu einer analogen Technetium-Verbindung zu ziehen wurde der beste Komplex 31 als Rhenium-Analog 32 hergestellt. Dies wies den bisher höchsten Gesamtumsatz von 88% auf, welches die Konversion von 70% der Verbindung 8 überschritt. Dadurch qualifizierte sich Verbindung 32 als beste Option für eine Umsetzung als Radiomarker. Nach den Erkenntnissen über die begünstigte Sterik der flexiblen tridendaten Liganden wurde versucht den Erfolg auf den Fünfring zu übertragen. Eine auf Indol-2-säure basierende Reihe an Komplexen (33,34,35) mit unterschiedlich langen Alkyl-Ketten zwischen Indol und Metallkomplex sollte Aufschluss über den sterischen Anspruch geben, allerdings war keine Konjugation für alle drei Derivate zu beobachten. Als Konsequenz wurde die 2-Position für weitere Funktionalisierung nicht weiter berücksichtigt. Die letzte verbliebene Stelle war das Indol-amin selbst, welche durch den Einsatz von 1-(3-bromopropyl)indol bei der Ligandensynthese erfolgreich alkyliert wurde. Der resultierende Mangan- 36 und Rhenium-Komplex 37 zeigten eine mit 22 vergleichbare moderate Konversion und um eine Größenordnung kleinere Ratenkonstante. Durch diese Erkenntnisse verblieb der Rhenium-Komplex 32 weiterhin der beste Kandidat für eine Umsetzung als radioaktiver Marker. Der hier beschriebene liquid chromatography coupled mass spectrometry basierte Assay für die Bestimmung der Inhibitions-Wirkung gegenüber der 3CLpro des sever acute respiratory syndrome coronavirus type 2 wurde erfolgreich etabliert. Durch die zusätzlichen Absorptions , sowie Massenspektren wurden weitere Informationen gewonnen, welche in den oft angewendeten Fluoreszenz-Resonanzenergietransfer Assays vernachlässigt werden und zu Verfälschungen der Inhibitionsergebnisse führen. Ausgehend von dem literaturbekannten kovalenten Inhibitor 42 wurde ein N1-methyliertes Derivat 43 hergestellt. Durch den Austausch von Benzoesäure durch Ferrocensäure wurden die Analoge 44 und 45 erhalten. Die Restkonzentration des 15mer Substrats nach der Inkubation wurde als Maß der Inhibition herangezogen. Hierfür wurde der molare Extinktionskoeffizient bei 280 nm mit (26.41±0.59) L*mol-1*cm-1 bestimmt. Die Methylierung führte zu einer erhöhten Stabilität. Der Wirkstoffkandidat 45 zeigte außerdem eine vollständige Inhibition im Rahmen des durchgeführten Assays. 4-Hydroxycoumarin wurde verwendet, um die fluoreszenten Analoga 49 und 50 herzustellen. Beide waren instabiler, wobei das Ferrocen-Derivat wie zuvor eine erhöhte Inhibition aufzeigte. Nach der Synthese und Auswertung des Assays für eine Thioester Modellverbindung 53 und einer nachgewiesenen Inaktivierung des etablierten Inhibitors Ebselen wurden die Nebenreaktionen mit DL-Dithiothreitol als Ursache für einen Konzentrationsabfall der aktiven und intakten Inhibitoren und infolgedessen verringerte Inhibition angenommen. Als nächstes wurde bewiesen, dass der Zusatz eines Reduktionsmittels wie keinen Einfluss auf die Enzymaktivität während des kurzen Assays hat. So wurden alle Einflüsse auf die Inhibitionswirkung ausgeschlossen und der nun makellose Assay für Ebselen und den hier vorgestellten neuartigen organometallischen Inhibitor 45 wiederholt, welche beide eine vollständige Inhibition aufwiesen. KW - Inhibition KW - SARS-CoV-2 KW - Covalent inhibitors KW - Surface modification KW - Indole conjugation KW - LCMS- based kinetic studies Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-287424 ER - TY - JOUR A1 - Kraft, Andreas A1 - Stangl, Johannes A1 - Krause, Ana-Maria A1 - Müller-Buschbaum, Klaus A1 - Beuerle, Florian T1 - Supramolecular frameworks based on [60]fullerene hexakisadducts JF - Beilstein Journal of Organic Chemistry N2 - [60]Fullerene hexakisadducts possessing 12 carboxylic acid side chains form crystalline hydrogen-bonding frameworks in the solid state. Depending on the length of the linker between the reactive sites and the malonate units, the distance of the [60]fullerene nodes and thereby the spacing of the frameworks can be controlled and for the most elongated derivative, continuous channels are obtained within the structure. Stability, structural integrity and porosity of the material were investigated by powder X-ray diffraction, thermogravimetry and sorption measurements. KW - chemistry KW - fullerenes KW - hexakisadducts KW - hydrogen bonding KW - porous materials KW - structure elucidation Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-171996 VL - 13 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 - THES A1 - Paul, Ursula Sofia Désirée T1 - Studies on the Reactivity of Iridium Bis(phosphinite) Pincer Complexes towards Phosphines, Boranes and their Lewis Adducts and on the Reactivity of Cyclic (Alkyl)(Amino) Carbenes and Nickel Complexes thereof T1 - Studien hinsichtlich der Reaktivität von Iridium bis(phosphinit)-Pincerkomplexen gegenüber Phosphanen, Boranen und deren Lewis Addukten und bezüglich der Reaktivität von zyklischen (Alkyl)(Amino) Carbenen und Nickelkomplexen davon N2 - The first part of the present work provides an insight into the chemistry of iridium complexes bearing the bis(phosphinite) pincer ligand tBuPOCOP (k3-C6H3-1,3-(OPtBu2)2) towards primary boranes and phosphines as well as phosphine-borane Lewis adducts. It furthermore encloses some more detailed studies on their application as catalyst for the dehydrogenative coupling of the latter compounds. The results presented herein can be divided into three sections: I. synthesis and characterization of aryl dihydroborate ligated iridium(III) complexes II. and aryl phosphine coordinated iridium(I) and dihydrido iridium(III) complexes, III. as well as studies on the reactivity of the parent iridium pincer complexes towards BH3 adducts of primary phosphines, which led to first results in the homogeneous catalytic dehydrocoupling of P-aryl substituted phosphine boranes mediated by such iridium pincer complexes. The second part of the present work provides an insight into the chemistry of cyclic (alkyl)(amino) carbene-stabilized nickel complexes as well as it encloses some more detailed studies on the properties and reactivity of the free carbenes itself. The results presented herein can be divided into four sections: I. synthesis and characterization of cyclic (alkyl)(amino) carbene-stabilized nickel carbonyl complexes, II. which allow the evaluation and quantification of the steric and electronic properties of these cyclic (alkyl)(amino) carbenes, III. first studies on the reactivity of these novel nickel complexes, and IV. investigations on C–F and C–H bond activation at the carbene center of cyclic (alkyl)(amino) carbenes. N2 - Der erste Abschnitt der vorliegenden Arbeit gibt einen vertieften Einblick in die Reaktivität von Iridiumkomplexen, die den bis(Phosphinit)-Pincer tBuPOCOP (k3-C6H3-1,3-(OPtBu2)2) als Liganden aufweisen, gegenüber primären Boranen und Phosphanen sowie gegenüber Phosphan-Boran-Lewis-Paaren. Desweiteren sind detailliertere Untersuchungen zu deren Anwendung als Katalysator zur dehydrogenativen Kupplung von Phosphanboranen enthalten. Die erhaltenen Ergebnisse lassen sich in drei Teilbereiche gliedern: I. Synthese und Charakterisierung von Iridium(III)-Komplexen, die Aryldihydroboratliganden tragen, II. Arylphosphan-koordinierte Iridium(I)- und Iridium(III)-Komplexe, III. sowie Studien zur Reaktivität der zugrundeliegenden Iridiumpincerkomplexe gegenüber BH3-Addukten von primären Phosphanen. Diese führten zu ersten Ergebnissen in der homogen-katalytischen Dehydrokupplung von Phosphanboranen unter Verwendung der Iridiumpincerkomplexe als Katalysator. Der zweite Abschnitt der vorliegenden Arbeit gibt einen Einblick in die Chemie von Nickelkomplexen, die durch zyklische (Alkyl)(Amino) Carbene (cAACs) stabilisiert werden. Desweiteren sind Untersuchungen zu den Eigenschaften und zur Reaktivität der freien Carbene selbst enthalten. Die erhaltenen Ergebnisse lassen sich in vier Teilbereiche gliedern: I. Synthese und Charakterisierung von Nickelkomplexen, die durch zyklische (Alkyl)(Amino) Carbene stabilisiert werden, II. welche die Bestimmung und Quantifizierung von deren sterischen und elektronischen Eigenschaften zulassen, III. erste Studien zur Reaktivität dieser neuartigen Nickelkomplexe, sowie IV. Untersuchungen zur C–F- und C–H-Bindungsaktivierung am Carbenkohlenstoffatom der entsprechenden zyklische (Alkyl)(Amino) Carbene. KW - Iridiumkomplexe KW - Iridium bis(phosphinite) pincer complexes KW - cyclic (alkyl)(amino) carbenes KW - carbene-stabilized nickel complexes KW - Nickelkomplexe KW - Metallorganische Chemie Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151963 ER - TY - THES A1 - He, Jiang T1 - Studies of N-heterocyclic olefins as donors in triarylboranes and electron-poor phenylpyridyl-fused boroles T1 - Studien N-heterozyklischer Olefine als Donoren in Triarylboranen und Elektronenarmer Phenylpyridyl-fusionierter Borole N2 - Chapter 1 N-Heterocyclic olefins (NHOs), relatives of N-heterocyclic carbenes (NHCs), exhibit high nucleophilicity and soft Lewis basic character. To investigate their π-electron donating ability, NHOs were attached to triarylborane π-acceptors (A) giving donor(D)-π-A compounds 1-3. In addition, an enamine π-donor analogue (4) was synthesized for comparison. UV-visible absorption studies show a larger red shift for the NHO-containing boranes than for the enamine analogue, a relative of a CAAC. The red shifted absorption of NHO-containing boranes indicate smaller energy gaps of NHO-containing boranes than CAAC-containing boranes. Solvent-dependent emission studies indicate that 1-4 have moderate intramolecular charge transfer (ICT) behavior. Electrochemical investigations reveal that the NHO-containing boranes have extremely low reversible oxidation potentials (e.g., for 3, E1/2ox = –0.40 V vs. Fc/Fc+ in THF) which indicate the electron rich property of NHOs. Furthermore, TD-DFT calculations were carried out on these four D-π-A boranes. The results show that the LUMOs of 1-4 only show a small difference, but the HOMOs of 1-3 are much more destabilized than that of the enamine-containing 4, which is in agreement with the electrochemical investigations and confirms the stronger donating ability of NHOs. Chapter 2 Since the beginning of this century, the chemistry of (hetero)arene-fused boroles has attracted increasing interest. (Hetero)arene-fused boroles exhibit strong Lewis acidity, distinct fluorescence properties, strong electron accepting abilities, etc. However, their chemistry been only very briefly reviewed either as part of reviews on “free” boroles or on boron-doped polycyclic aromatic hydrocarbons (PAHs). In this chapter, we addressed the chemistry of (hetero)arene-fused boroles from fundamentals to their widely varying applications. It includes: 1) Synthetic methodology  Both historical and recently developed strategies for the synthesis of fused boroles. 2) Stabilities  A comparison of different kinetic protection strategies. 3) 9-Borafluorenes with a fluorinated backbone  Application as Lewis acids, forming ion pairs with Cp2Zr(CH3)2 and applied as activators for polymerization, activators of H2, and other related applications. 4) Donor-acceptor 9-borafluorenes  Applications as F– “turn on” sensors, potential applications as electron accepting units for organic (opto)electronics, bipolar transporting materials, TADF materials, and different functionalization strategies. 5) Heteroarene-fused boroles  Enhanced antiaromaticity, unique coordination mode and their interesting properties. 6) Intramolecular dative bonding in 9-borafluorenes  Bond-cleavage-induced intramolecular charge transfer (BICT), BICT-induced large Stoke shifts and dual emissions, application as a ratiometric sensor. 7) 9-Borafluorene-based main chain polymers  Application in polymer chemistry and their distinct properties, e.g., as a sensor for gaseous NH3. 8) Electrochemistry  A comparison of electron-accepting ability of different functionalized fused boroles through electrochemical studies. 9) Chemical reduction of fused boroles  Stable radical anions and dianions of fused boroles and their properties. 10) Three-coordinate borafluorenium cations  Cationic 9-borafluorenes and their interesting properties, e.g., in THF, reversible thermal colour switching properties. Finally, a conclusion and outlook regarding the chemistry, properties and applications, and suggestions for areas which require further study was provided.   Chapter 3 Interested in fusing electron-poor arene onto boroles, two electron-poor phenylpyridyl-fused boroles, [TipPBB1]4 and TipPBB2 were prepared. [TipPBB1]4 is a white solid adopting a unique coordination mode, which forming a tetramer with a cavity in both the solid state and solution (1H DOSY). The boron center of TipPBB2 is 4-coordinate in the solid state, evidenced by a solid-state 11B{1H} RSHE/MAS NMR study, but the system dissociates in solution, leading to 3-coordinate borole species. [TipPBB1]4 exhibits two reduction processes which are attributed to the phenylpyridyl cores. TipPBB2 also exhibits two reduction processes with the first half-reduction potential of E1/2red = –1.94 V. The electron accepting ability of TipPBB2 is largely enhanced and comparable to that of FMesBf. This enhanced electron accepting ability is attributed to the electron withdrawing property of the pyridyl group. TipPBB2 exhibits concentration- and temperature-dependent dual fluorescence in solution. With the temperature is lowered, the emission intensity decreases (Figure 6.4, left). We suggested that the dual fluorescence is caused by an equilibrium between 3-coordinate TipPBB2 and a weak intermolecular adduct of TipPBB2 via a B–N bond. This hypothesis was further supported by lifetime measurements at different concentrations, low temperature excitation spectra low temperature 1H NMR spectra and lifetime measurements upon addition of DMAP to a solution of TipPBB2 to simulate the 4-coordiante TipPBB2 species. Interestingly, the ratio of the relative percentages of the two lifetimes shows a linear relationship with temperature; thus, TipPBB2 could serve as a fluorescent thermometer. Furthermore, theoretical studies were carried out on TipPBB2, and two models, ((BMe3)TipPBB1(NMe3) and (BMe3)TipPBB2(NMe3)), which utilize a BMe3 group as the Lewis acid coordinated to pyridine and an NMe3 group as the Lewis base coordinated to the boron center of the borole, were used to simulate the [TipPBB1]4 and intermolecular 4-coordinate TipPBB2, respectively. Theoretical studies indicate that the HOMO of TipPBB2 is located at the Tip group, which is in contrast to its borafluorene derivatives for which the HOMOs are located on the borafluorene cores. Chapter 4 Two derivatives of phenylpyridyl-fused boroles were prepared via functionalization of the pyridyl groups in two different directions, namely an electron-rich dihydropyridine moiety (compound 10) and an electron-deficient N-methylpyridinium cation (compound 11). Both compounds were fully characterized. The 11B NMR signal of compound 10 was observed at 58.8 ppm in CDCl3, which suggests strong conjugation between the boron atom and dihydropyridine moiety. Compound 11 shows a reversible coordination to THF which was confirmed by NMR studies. Compared to other 2,4,6-triisopropylphenyl protected 9-borafluorenes which only coordinate to CH3CN or DMF, the coordination of the weaker and bulkier THF to compound 11 indicates an extremely electron-deficient boron center in compound 11. The electron-rich property of the dihydropyridine moiety of compound 10 was confirmed by its oxidation potential (Epc = +0.37 V). Due to the strong conjugation of the dihydropyridine moiety with the boron atom, the reduction potential of compound 10 shifts cathodically and is more negative than –2.5 V. Compound 11 exhibits three reduction processes with the first reversible reduction potential at Ered1/2 = –1.23 V, which is significantly anodically shifted compared to that of its precursor (TipPBB2) or its framework 1-methyl-2-phenylpyridin-1-ium triflate (12). This significantly anodically shifted reduction potential confirms an extremely electron-deficient property of compound 11. Photophysical studies indicate that the lowest energy transition of compound 10 is more likely a locally-excited (LE) transition and compound 11 exhibits a polarized ground state. Furthermore, we performed theoretical studies for both compounds. The electron cloud distribution of the HOMO of compound 10 supports the strong conjugation between the boron atom and the dihydropyridine moiety in the ground state. An extremely low LUMO energy was determined by theoretical studies which confirmed the extremely electron-deficient property of compound 11.   Chapter 5 Inspired by the enhancement of electron accepting ability with increasing numbers of electron withdrawing groups at boron, we tried to study the properties of a bis(pyridyl)arylboranes. In our attempt to synthesize a bis(pyridyl)arylborane, we obtained a bis(2-pyridyl)methoxyborate Li+ complex which is as a dimer both in solution and the solid state. In the solid state, compound [16]2 is a dimer containing two bis(2-pyridyl)methoxyborate which are linked by two lithium cations. Each lithium cation coordinates to one methoxy group and two pyridyl groups, one from each of the two bis(2-pyridyl)methoxyborate anions. The parameters of [16]2 were compared with other bis(2-pyridyl)methoxyborate stabilized Pt(IV) complex, bis(2-pyridyl)hydroxylborate stabilized Ru(II) complex and the dimer of EtAl(OMe)(2-pyridyl)2Li. To confirm the coordination mode in solution, 1H DOSY spectroscopy was carried out in CD2Cl2. The van der Waals radius obtained by 1H DOSY nicely matches with the result from the solid state and thus proves the dimer of 16 is persistent in solution. Finally, different Lewis acids (e.g., TMSCl, BF3•Et2O, AlCl3, HCl) were used to attempt to detach the methoxy group of [16]2. However, we observed either decomposition or selective cleavage of the Tip group, or no reaction at all, rather than cleavage of the methoxy group from boron. N2 - 1 Kapitel 1 N-Heterocyclische Olefine (NHOs) sind Verwandte der N-heterocyclischen Carbene (NHCs) und weisen eine hohe Nukleophilie sowie einen weichen Lewis-Grundcharakter auf. Um ihre Fähigkeit als π-Elektronendonor zu untersuchen, wurden diese NHOs an π-Triarylboran-Akzeptoren (A) gebunden, wodurch die Donor(D)-π-A-Verbindungen 1-3 erhalten wurden. Zusätzlich wurde zum Vergleich das Enamin π-Donoranalogon (4) synthetisiert. Studien zur UV/Vis-Absorption zeigen für die NHO-haltigen Borane eine stärkere Rotverschiebung als für das Enamin-Analogon, welches ein Verwandter von CAACs ist. Die rotverschobene Absorption der NHO-haltigen Borane weist auf kleinere Energielücken bei den NHO-haltigen Boranen als bei den CAAC-haltigen Boranen hin. Des Weiteren zeigen Lösungsmittel-abhängige Emissionsstudien, dass die Verbindungen 1-4 ein moderates intramolekulares Ladungstransfer(ICT)-Verhalten aufweisen. Elektrochemische Untersuchungen zeigen, dass die NHO-haltigen Borane extrem niedrige reversible Oxidationspotentiale aufweisen (z.B. für 3, E1/2ox = –0,40 V vs. Fc/Fc+ in THF), was auf die elektronenreiche Eigenschaft der NHOs hinweist. Darüber hinaus wurden TD-DFT-Berechnungen für diese vier D-π-A-Borane durchgeführt. Die Ergebnisse zeigen, dass die jeweiligen LUMOs von 1-4 nur einen geringen Unterschied zueinander aufweisen, die HOMOs von 1-3 jedoch viel stärker destabilisiert sind als die des enaminhaltigen 4, was mit den elektrochemischen Untersuchungen übereinstimmt und die stärkere Donorfähigkeit der NHOs bestätigt. 2 Kapitel 2 Seit Beginn dieses Jahrhunderts hat die Chemie von (Hetero)aren-kondensierten Borolen zunehmendes Interesse geweckt. (Hetero)aren-kondensierte Borole weisen eine starke Lewis-Acidität, ausgeprägte Fluoreszenzeigenschaften, starke Elektronenakzeptor-fähigkeiten, etc. auf. Ihre Chemie wurde jedoch bislang nur wenig untersucht und es gibt kaum Übersichten zu ihren Eigenschaften, entweder als Teil von Übersichtsarbeiten über "freie" Borole oder über bordotierte polyzyklische aromatische Kohlenwasserstoffe (PAK). In diesem Kapitel wird die Chemie von (Hetero)aren-kondensierten Borolen von den Grundlagen bis zu ihren sehr unterschiedlichen Anwendungen behandelt. Es umfasst: 1) Synthetische Methoden  Sowohl historische als auch kürzlich entwickelte Strategien für die Synthese von kondensierten Borolen. 2) Stabilitäten  Ein Vergleich verschiedener kinetischer Schutzstrategien. 3) 9-Borafluorene mit fluoriertem Rückgrat  Anwendung als Lewis-Säure, Bildung von Ionenpaaren mit Cp2Zr(CH3)2 und Anwendung als Aktivatoren für die Polymerisation, Aktivatoren von H2 und andere verwandte Anwendungen. 4) Donor-Akzeptor 9-Borafluorene  mögliche Anwendungen als F– "Einschalt"-Sensoren, als elektronenakzeptierende Einheit für die organische (Opto-)Elektronik, bipolare Transportmaterialien, TADF-Materialien und verschiedene Funktionalisierungsstrategien. 5) Heteroaren-kondensierte Borole  Gesteigerte Antiaromatizität, einzigartiger Koordinationsmodus und interessante Eigenschaften. 6) Intramolekulare dative Bindung in 9-Borafluorenen  Bindungsbruch-induzierter intramolekularer Ladungstransfer (BICT), BICT-induzierte große Stokes-Verschiebungen und duale Emissionen, Anwendung als ratiometrischer Sensor. 7) 9-Borafluoren-basierte Hauptkettenpolymere  Anwendung in der Polymerchemie und deren charakteristische Eigenschaften, z.B. als Sensoren für gasförmiges NH3. 8) Elektrochemie  Ein Vergleich der Elektronenakzeptorfähigkeit unterschiedlicher funktionalisierter kondensierter Borole durch elektrochemische Untersuchungen. 9) Chemische Reduktion von kondensierten Borolen  Stabile Radikalanionen und Dianionen von kondensierten Borolen und deren Eigenschaften. 10) Dreifach koordinierte Borafluorenium-Kationen  Kationische 9-Borafluorene und ihre spannenden Eigenschaften, wie z.B. die reversible thermische Schaltbarkeit durch Farbe in THF. Am Ende des Kapitels werden Schlussfolgerungen gezogen und ein Ausblick zur weiteren Chemie, etwaigen Eigenschaften sowie möglichen Anwendungen gegeben. Ferner werden Vorschläge zu Feldern gemacht, die weitere Untersuchungen bedürfen. 3 Kapitel 3 Um elektronenarme Arene mit Borolen zu kondensieren, wurden zwei elektronenarme Phenylpyridyl-kondensierte Borole, [TipPBB1]4 und TipPBB2, hergestellt. [TipPBB1]4 ist ein weißer Feststoff, der einen einzigartigen Koordinationsmodus aufweist. Sowohl im Festkörper als auch in Lösung (1H DOSY) liegt ein Tetramer mit einem Hohlraum vor. Das Borzentrum von TipPBB2 ist im Festkörper 4-fach koordiniert, was durch ein Festkörper 11B{1H} nachgewiesen wurde. RSHE/MAS-NMR-Studien zeigten aber, dass das System in Lösung dissoziiert, was zu einer 3-fach koordinierten-Borolspezies führt. [TipPBB1]4 zeigt zwei Reduktionsprozesse, die den Phenylpyridylkernen zugeschrieben werden. TipPBB2 zeigt ebenfalls zwei Reduktionsprozesse mit dem ersten Halb- Reduktionspotential von E1/2red. = –1,94 V. Die Elektronenakzeptorfähigkeit von TipPBB2 ist somit weitgehend verbessert und mit der von FMesBf vergleichbar. Diese verbesserte Elektronenakzeptorfähigkeit ist auf den elektronenziehenden Effekt der Pyridylgruppe zurückzuführen. TipPBB2 zeigt konzentrations- und temperaturabhängige duale Fluoreszenz in Lösung. Mit sinkender Temperatur nimmt die Emissionsintensität ab. Es liegt die Vermutung nahe, dass die duale Fluoreszenz durch ein Gleichgewicht zwischen 3-fach koordinierten-TipPBB2 und einem schwachen intermolekularen Addukt von TipPBB2 über eine B–N-Bindung verursacht wird. Diese Hypothese wurde durch Lebenszeitmessungen bei verschiedenen Konzentrationen, Niedrigtemperatur-Anregungsspektren, Niedrigtemperatur-1H-NMR-Spektren und Lebenszeitmessungen nach Zugabe von DMAP zu einer Lösung von TipPBB2 zur Simulation der 4-fach koordinierten-TipPBB2-Spezies weiter untermauert. Interessanterweise zeigt das Verhältnis der relativen Prozentsätze der beiden Lebenszeiten eine lineare Beziehung mit der Temperatur; daher könnte TipPBB2 als Fluoreszenzthermometer dienen. Darüber hinaus wurden theoretische Studien zu TipPBB2 durchgeführt und zwei Modellverbindungen ((BMe3)TipPBB1(NMe3) und (BMe3)TipPBB2(NMe3)) wurden untersucht, um [TipPBB1]4 bzw. das intermolekular-4-fach koordinierte TipPBB2 zu simulieren. Die BMe3-Gruppe koordiniert als Lewis-Säure an Pyridin und die NMe3-Gruppe als Lewis-Base an das Borzentrum des Borols. Die theoretischen Studien weisen darauf hin, dass das HOMO von TipPBB2 an der Tip-Gruppe lokalisiert ist, was im Gegensatz zu den entsprechenden Borafluoren-Derivaten steht, bei denen sich die HOMOs auf den Borafluoren-Kernen befinden. 4 Kapitel 4 Zwei Derivate von Phenylpyridyl-kondensierten Borolen wurden durch Funktionalisierung der Pyridylgruppe an zwei unterschiedlichen Positionen hergestellt, zum einen eine elektronenreiche Dihydropyridin-Einheit (Verbindung 10) und zum anderen ein elektronenarmes N-Methylpyridinium-Kation (Verbindung 11). Beide Verbindungen wurden vollständig charakterisiert. Das 11B-NMR-Signal von Verbindung 10 wurde bei 58,8 ppm in CDCl3 beobachtet, was auf eine starke Konjugation zwischen dem Boratom und der Dihydropyridin-Einheit schließen lässt. Verbindung 11 zeigt eine reversible Koordination zu THF, was durch NMR-Studien bestätigt wurde. Im Vergleich zu anderen 2,4,6-Triisopropylphenyl-geschützten 9-Borafluorenen, die nur an CH3CN oder DMF koordinieren, weist die Koordination des schwächeren und voluminöseren THF zu Verbindung 11 auf ein extrem elektronenarmes Borzentrum in Verbindung 11 hin. Der Elektronenreichtum der Dihydropyridin-Einheit von Verbindung 10 wurde durch sein Oxidationspotential (Epc = +0,37 V) bestätigt. Aufgrund der starken Konjugation des Dihydropyridinteils mit dem Boratom verschiebt sich das Reduktionspotential von Verbindung 10 kathodisch und ist negativer als –2,5 V. Verbindung 11 zeigt drei Reduktionsprozesse mit dem ersten reversiblen Reduktionspotential bei Ered1/2 = –1,23 V, das im Vergleich zu dem der Vorstufe (TipPBB2) oder ihres Gerüstes 1-Methyl-2-phenylpyridin-1-ium-Triflat (12) signifikant anodisch verschoben ist. Dieses signifikant anodisch verschobene Reduktionspotential bestätigt das Elektronendefizit von Verbindung 11. Photophysikalische Studien zeigen, dass der niedrigste Energieübergang von Verbindung 10 eher ein lokal angeregter (LE) Übergang ist und Verbindung 11 einen polarisierten Grundzustand aufweist. Darüber hinaus wurden für beide Verbindungen theoretische Studien durchgeführt. Die Elektronenverteilung des HOMO von Verbindung 10 belegt die starke Konjugation zwischen dem Boratom und der Dihydropyridin-Einheit im Grundzustand. Eine sehr niedrige LUMO-Energie wurde durch theoretische Studien ermittelt, die das Elektronendefizit von Verbindung 11 bestätigt. 5 Kapitel 5 Inspiriert durch die zunehmende Elektronenakzeptorfähigkeit mit wachsender Anzahl elektronenziehender Gruppen am Boratom versuchten wir, die Eigenschaften eines Bis(pyridyl)arylborans zu untersuchen. Bei unserem Versuch, ein Bis(pyridyl)arylboran zu synthetisieren, erhielten wir jedoch einen Bis(2-pyridyl)methoxyborat-Li+-Komplex, der als Dimer sowohl in Lösung als auch im festen Zustand vorliegt. Im Festkörper ist die Verbindung [16]2 ein Dimer, das zwei Bis(2-pyridyl)methoxyborat-Einheiten enthält welche durch zwei Lithiumkationen verbunden sind. Jedes Lithiumkation koordiniert an eine Methoxygruppe und an zwei Pyridylgruppen, jeweils eine von jedem der beiden Bis(2-pyridyl)methoxyborat-Anionen. Die Parameter von [16]2 wurden mit anderen Bis(2-pyridyl)methoxyborat-stabilisierten Pt(IV)-Komplexen, Bis(2-pyridyl)hydroxylborat-stabilisierten Ru(II)-Komplexen und dem Dimer von EtAl(OMe)(2-pyridyl)2Li verglichen. Um den Koordinationsmodus in Lösung zu bestätigen, wurde eine 1H-DOSY-Studie in CD2Cl2 durchgeführt. Der aus den Daten ermittelte van-der-Waals-Radius stimmt gut mit dem Ergebnis aus den Festkörperuntersuchungen überein und beweist somit, dass das Dimer von 16 in Lösung persistent ist. Schließlich wurde mit verschiedenen Lewis-Säuren (z.B. TMSCl, BF3•Et2O, AlCl3, HCl) versucht, die Methoxygruppe von [16]2 abzuspalten. Wir beobachteten jedoch entweder eine Zersetzung oder selektive Abspaltung der Tip-Gruppe oder gar keine Reaktion und nicht die Abspaltung der Methoxy-Gruppe von Bor. KW - Triarylborane KW - Borole KW - Pyridinderivate KW - Heterocyclische Verbindungen Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-217175 ER - TY - JOUR A1 - Kaupp, Martin A1 - Schleyer, Paul von Rague T1 - Struktur- und Stabilitätstrends bei Fluor(methyl)plumbanen N2 - No abstract available KW - Anorganische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60091 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 - 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 - Lenczyk, Carsten A1 - Roy, Dipak Kumar A1 - Nitsch, Jörn A1 - Radacki, Krzysztof A1 - Rauch, Florian A1 - Dewhurst, Rian D. A1 - Bickelhaupt, F. Matthias A1 - Marder, Todd B. A1 - Braunschweig, Holger T1 - Steric Effects Dictate the Formation of Terminal Arylborylene Complexes of Ruthenium from Dihydroboranes JF - Chemistry - A European Journal N2 - The steric and electronic properties of aryl substituents in monoaryl borohydrides (Li[ArBH\(_3\)]) and dihydroboranes were systematically varied and their reactions with [Ru(PCy\(_3\))\(_2\)HCl(H\(_2\))] (Cy: cyclohexyl) were studied, resulting in bis(σ)‐borane or terminal borylene complexes of ruthenium. These variations allowed for the investigation of the factors involved in the activation of dihydroboranes in the synthesis of terminal borylene complexes. The complexes were studied by multinuclear NMR spectroscopy, mass spectrometry, X‐ray diffraction analysis, and density functional theory (DFT) calculations. The experimental and computational results suggest that the ortho‐substitution of the aryl groups is necessary for the formation of terminal borylene complexes. KW - Arylborylene Complexes KW - Ruthenium KW - Dihydroboranes KW - boranes KW - borohydrides KW - borylenes KW - steric effects KW - sigma boranes Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-219537 SN - 1521-3765 VL - 25 IS - 59 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 - 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 - 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 - 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 - Feifel, R. A1 - Wagner-Röder, M. A1 - Strohmann, C. A1 - Tacke, Reinhold A1 - Waelbroeck, M. A1 - Christophe, J. A1 - Mutschler, E. A1 - Lambrecht, G. T1 - Stereoselective inhibition of muscarinic receptor subtypes by the enantiomers of hexahydro-difenidol and acetylenic analogues N2 - 1 Tbc affinities of the (R)- and (S)-enantiomers of hexahydro-difenidol (1) and its acetylenie analogues hexbutinol (2), hexbutinol methiodide (3) and p-fluoro-hexbutinol (4) (stereochemieal purity > 99.8%) for musearlnie receptors in rabbit vas deferens (M1), guinea-pig atria (M2) and guinea-pig ileum (M3) were measured by dose-ratio experiments. 2 The (R)-enantiomers consistently showed higher aßinities than the (S)-isomers. The stereosclectivity ratios [(R)/(S)] wcrc greatest with thc enantiomers of 1 (vas deferens: 550; ilcum: 191; atria: 17) and least with thosc ofthc p-Fluoro-analogue 4 (vas defercns: 34; ileum: 8.5; atria: 1.7). 3 The enantiomerie potency ratios for compounds 1-4 were highest in rabbit vas deferens, intermediate in guinea-pig ileum and much less in guinea-pig atria. Thus, these ratios may serve as a predietor of muscarinic receptor subtype identity. 4 (S)-p-Fluoro-hexbutinol [(S)-4] showed a novel receptor selectivity profile with preference for M\(_3\) receptors: M\(_3\) > M\(_2\) \(\geq\) M\(_1\)• 5 These results do not conform to Pfeiffer's rule that aetivity differences between enantiomers are greater with more potent compounds. KW - Anorganische Chemie Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64002 ER - 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 - Dietz, Maximilian A1 - Arrowsmith, Merle A1 - Reichl, Stephan A1 - Lugo‐Fuentes, Leonardo I. A1 - Jiménez‐Halla, J. Oscar C. A1 - Scheer, Manfred A1 - Braunschweig, Holger T1 - Stable Two‐Legged Parent Piano‐Stool and Mixed Diborabenzene‐E\(_{4}\) (E=P, As) Sandwich Complexes of Group 8 JF - Angewandte Chemie International Edition N2 - A cyclic alkyl(amino)carbene‐stabilized 1,4‐diborabenzene (DBB) ligand enables the isolation of 18‐electron two‐legged parent piano‐stool Fe\(^{0}\) and Ru\(^{0}\) complexes, [(η\(^{6}\)‐DBB)M(CO)\(_{2}\)], the ruthenium complex being the first of its kind to be structurally characterized. [(η\(^{6}\)‐DBB)Fe(CO)\(_{2}\)] reacts with E\(_{4}\) (E=P, As) to yield mixed DBB‐cyclo‐E\(_{4}\) sandwich complexes with planar E\(_{4}\)\(^{2-}\) ligands. Computational analyses confirm the strong electron‐donating capacity of the DBB ligand and show that the E\(_{4}\) ligand is bound by four equivalent Fe−P σ bonds. KW - 1,4-Diborabenzene KW - bonding KW - group 8 metals KW - Parent Piano-Stool Complex KW - Pnictogen reduction Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-293880 VL - 61 IS - 36 ER - TY - INPR A1 - Englert, Lukas A1 - Stoy, Andreas A1 - Arrowsmith, Merle A1 - Müssig, Jonas H. A1 - Thaler, Melanie A1 - Deißenberger, Andrea A1 - Häfner, Alena A1 - Böhnke, Julian A1 - Hupp, Florian A1 - Seufert, Jens A1 - Mies, Jan A1 - Damme, Alexander A1 - Dellermann, Theresa A1 - Hammond, Kai A1 - Kupfer, Thomas A1 - Radacki, Krzysztof A1 - Thiess, Torsten A1 - Braunschweig, Holger T1 - Stable Lewis Base Adducts of Tetrahalodiboranes: Synthetic Methods and Structural Diversity T2 - Chemistry - A European Journal N2 - A series of 22 new bis(phosphine), bis(carbene) and bis(isonitrile) tetrahalodiborane adducts has been synthesized, either by direct adduct formation with highly sensitive B2X4 precursors (X = Cl, Br, I) or by ligand exchange at stable B2X4(SMe2)2 precursors (X = Cl, Br) with labile dimethylsulfide ligands. The isolated compounds have been fully characterized using NMR spectroscopic, (C,H,N)- elemental and, for 20 of these compounds, X-ray crystallographic analysis, revealing an unexpected variation in the bonding motifs. Besides the classical B2X4L2 diborane(6) adducts, some of the more sterically demanding carbene ligands induce a halide displacement leading to the first halide-bridged monocationic diboron species, [B2X3L2]A (A = BCl4, Br, I). Furthermore, low-temperature 1:1 reactions of B2Cl4 with sterically demanding N-heterocyclic carbenes led to the formation of kinetically unstable mono-adducts, one of which was structurally characterized. A comparison of the NMR and structural data of new and literature-known bis-adducts shows several trends pertaining to the nature of the halides and the stereoelectronic properties of the Lewis bases employed. KW - diborane(6) KW - Lewis-base adducts KW - ligand exchange KW - crystallography KW - NMR spectroscopy Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184888 N1 - This is the pre-peer reviewed version of the following article: L. Englert, A. Stoy, M. Arrowsmith, J. H. Muessig, M. Thaler, A. Deißenberger, A. Häfner, J. Böhnke, F. Hupp, J. Seufert, J. Mies, A. Damme, T. Dellermann, K. Hammond, T. Kupfer, K. Radacki, T. Thiess, H. Braunschweig, Chem. Eur. J. 2019, 25, 8612. https://doi.org/10.1002/chem.201901437, which has been published in final form at https://doi.org/10.1002/chem.201901437. 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 - 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 - INPR A1 - Arrowsmith, Merle A1 - Dömling, Michael A1 - Schmidt, Uwe A1 - Werner, Luis A1 - Castro, Abril C. A1 - Jiménez-Halla, J. Oscar C. A1 - Müssig, Jonas A1 - Prieschl, Dominic A1 - Braunschweig, Holger T1 - Spontaneous trans‐Selective Transfer Hydrogenation of Apolar B=B Double Bonds T2 - Angewandte Chemie, International Edition N2 - The transfer hydrogenation of NHC-supported diborenes with dimethylamine borane proceeds with high selectivity for the trans-1,2-dihydrodiboranes(6). DFT calculations suggest a stepwise proton-first-hydride-second reaction mechanism via an intermediate μ-hydrodiboronium dimethylaminoborate ion pair. KW - transfer hydrogenation KW - diborene KW - amine borane dehydrocoupling KW - diboranes KW - DFT mechanism Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184874 N1 - This is the pre-peer reviewed version of the following article: M. Dömling, M. Arrowsmith, U. Schmidt, L. Werner, A. C. Castro, J. O. C. Jiménez-Halla, R. Bertermann, J. Müssig, D. Prieschl, H. Braunschweig, Angew. Chem. Int. Ed. 2019, 58, 9782. doi:10.1002/anie.201902656, which has been published in final form at https://doi.org/10.1002/anie.201902656. 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 - Gräb, Patrick A1 - Geidel, Ekkehard T1 - Spectroscopic studies of food colorings JF - World Journal of Chemical Education N2 - In chemical education, it is often a challenge to understand the basic principles of spectroscopic techniques due to missing connections to the real world. Therefore, the present contribution offers context-based applications of UV/Vis spectroscopy for analytics of food colorings with which learners can improve their skills regarding this method. The spectroscopic determination of food colorings seems to be a promising approach due to the long tradition and omnipresence of dyes in supermarket products. The therefor-required spectral data for commonly used dyes are provided for educational usage. Qualitative and quantitative analytics of food colorings in four different lemonades and chocolate beans have been used to introduce learners to important analytical techniques like sample preparation or elimination of confounding factors. These analytics also display the limitations of the method in the visible range of light in the case of tartrazine and curcumin. By applying Lambert-Beer-Bouguer’s Law in different variations, typical calculations of concentrations can be studied in quantitative analyses. The studied food samples demonstrate the different usage of food colorings depending on the country of sale. Finally, a 3D-printable low-cost photometer suitable for the discussed quantitative analytics in educational contexts is presented. KW - UV/Vis spectroscopy KW - quantitative analysis KW - food colorings KW - context-based teaching KW - low-cost photometer Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201908 VL - 7 IS - 2 ER - TY - INPR A1 - Brückner, Tobias A1 - Stennett, Tom E. A1 - Heß, Merlin A1 - Braunschweig, Holger T1 - Single and Double Hydroboration of B-B Triple Bonds and Conver- gent Routes to a Cationic Tetraborane T2 - Journal of the American Chemical Society N2 - A compound with a boron-boron triple bond is shown to undergo stepwise hydroboration reactions with catecholborane to yield an unsymmetrical hydro(boryl)diborene and a 2,3-dihydrotetraborane. Abstraction of H– from the latter compound produces an unusual cationic, planar tetraborane with a hydrogen atom bridging the central B2 moiety. Spectroscopic and crystallographic data and DFT calculations support a ‘protonated diborene’ structure for this compound, which can also be accessed via direct protonation of the corresponding diborene. KW - boron KW - multiple bonding KW - hydroboration Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-188632 N1 - This document is the unedited Author’s version of a Submitted Work that was subsequently accepted for publication in Journal of the American Chemical Society, copyright © American Chemical Society after peer review. To access the final edited and published work see https://doi.org/10.1021/jacs.9b07991. ER - TY - JOUR A1 - Böhnke, Julian A1 - Brückner, Tobias A1 - Hermann, Alexander A1 - González-Belman, Oscar F. A1 - Arrowsmith, Merle A1 - Jiménez-Halla, J. Oscar C. A1 - Braunschweig, Holger T1 - Single and double activation of acetone by isolobal B≡N and B≡B triple bonds JF - Chemical Science N2 - B≡N and B≡B triple bonds induce C-H activation of acetone to yield a (2-propenyloxy)aminoborane and an unsymmetrical 1-(2- propenyloxy)-2-hydrodiborene, respectively. DFT calculations showed that, despite their stark electronic differences, both the B≡N and B≡B triple bonds activate acetone via a similar coordination-deprotonation mechansim. In contrast, the reaction of acetone with a cAAC-supported diboracumulene yielded a unique 1,2,3-oxadiborole, which according to DFT calculations also proceeds via an unsymmetrical diborene, followed by intramolecular hydride migration and a second C-H activation of the enolate ligand. KW - acetone KW - diborynes KW - iminoboranes KW - boron KW - small-molecule activation Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-164286 VL - 9 ER - TY - INPR A1 - Arrowsmith, Merle A1 - Böhnke, Julian A1 - Braunschweig, Holger A1 - Deißenberger, Andrea A1 - Dewhurst, Rian A1 - Ewing, William A1 - Hörl, Christian A1 - Mies, Jan A1 - Muessig, Jonas T1 - Simple Solution-Phase Syntheses of Tetrahalodiboranes(4) and their Labile Dimethylsulfide Adducts T2 - Chemical Communications N2 - Convenient, solution-phase syntheses of tetrahalodiboranes(4) B\(_2\)F\(_4\), B\(_2\)Cl\(_4\) and B\(_2\)I\(_4\) are presented herein from common precursor B\(_2\)Br\(_4\). In addition, the dimethylsulfide adducts B\(_2\)Cl\(_4\)(SMe\(_2\))\(_2\) and B\(_2\)Br\(_4\)(SMe\(_2\))\(_2\) are conveniently prepared in one-step syntheses from the commercially-available starting material B\(_2\)(NMe\(_2\))\(_4\). The results provide simple access to the full range of tetrahalodiboranes(4) for the exploration of their untapped synthetic potential. KW - Boron KW - Diboranes KW - Tetrafluorodiborane Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-149438 N1 - This is the pre-peer reviewed version of the following article: Chemical Communications, 2017,53, 8265-8267, which has been published in final form at doi:10.1039/C7CC03148C. VL - 53 ER -