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Institute
- Institut für Anorganische Chemie (671) (remove)
Sonstige beteiligte Institutionen
- Didaktik der Chemie (1)
- Fakultät für Chemie und chemische Biologie, Technische Universität Dortmund (1)
- Fraunhofer Insitut für Silicatforschung ISC (1)
- Fraunhofer-Institut Würzburg (1)
- Fraunhofer-Institut für Chemische Technologie (ICT) (1)
- Institut Ruđer Bošković, Zagreb, Croatia (1)
- Institut für Organische Chemie, RWTH Aachen (1)
- Institute for Sustainable Chemistry & Catalysis with Boron (1)
- Institute of Transformative Bio-Molecules, Nagoya University, Nagoya, Japan (1)
- Leibniz-Institut für Katalyse Rostock (1)
ResearcherID
- D-3057-2014 (1)
Die vorliegende Arbeit beschäftigt sich mit der Darstellung und Reaktivität von Cp substituierten Aluminium(I)-Verbindungen.
Außerdem konnten die ersten Vertreter für planare Cyclopenten-4-yl-Kationen dargestellt werden.
Die Reaktivität von Cp3tAl(I), [AlCp*]4 und DipNacNacAl wurde gegenüber Cyclotriphosphiranen untersucht. In Abhängigkeit vom sterischen Anspruch der Substituenten am Phosphor- und Aluminiumatom wurden hierbei verschiedenartige AlP-Ringsysteme erhalten.
Desweiteren wurden Phospha-Wittig-Reagenzien als Phosphinidenquelle für die Umsetzung mit Aluminium(I)-Spezies getestet, wobei verschiedene 3- und 4 gliedrige Strukturmotive erhalten werden konnten.
Bei Erhöhung der Sterik am Phospha-Wittig-Reagenz zu einem DipTer-Substituenten konnte im Fall der Umsetzung mit [AlCp*]4 der ersten Vertreter eines Phosphaalumens dagestellt werden.
In ersten Reaktivitätsstudien mit ungesättigten Substraten konnten für Doppelbindungssysteme charakteristische Additionsreaktionen nachgewiesen werden.
Im Rahmen dieser Arbeit konnte zunächst die Reaktivität des CAAC-substituierten 2,3,4,5-Tetraphenylberyllols gegenüber häufig verwendeten Substraten für Ringerweiterungsreaktionen und Cycloadditionen untersucht werden.
Weiterhin wurde die Darstellung eines neuen monocyclischen Beryllols beschrieben, welches aufgrund seines veränderten Rückgrats eine erhöhte Reaktivität verspricht.
In einem weiteren Teil dieser Arbeit wurde die Verbindungsklasse der Dibenzoberyllole erstmals zugänglich gemacht. Zusätzlich wurde deren Reduktionsverhalten und thermische Zersetzung beispielhaft anhand eines CAAC-substituierten Dibenzoberyllols aufgeklärt.
Im letzten Teil erfolgte die Untersuchung der Reaktivität dieser neuen Verbindungsklasse gegenüber Lewisbasen und typischen Substraten für Ringerweiterungsreaktionen. Weiterhin wurde die Möglichkeit, Dibenzoberyllole als Transferreagenzien für das Biphenylrückgrat zu nutzen, ermittelt.
This thesis describes the synthesis and reactivity of bis-NHC ligated nickel(0)-complexes and their application in catalytic cyclization and borylation reactions of alkynes. The focus of the presented work lies on the investigation of the electronic and steric impact of different NHC ligands on the reactivity and catalytic activity of [Ni(NHC)2] complexes. Since d10 ML2 complexes play a decisive role for numerous catalytic reactions, such as the Suzuki-Miyaura cross-coupling, the first chapter provides an overview about the general properties of NHCs and the chemistry of NHC-ligated nickel complexes, their synthesis, characterization, reactivity, and application in catalysis.
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.
1. Bis(1-(4-tolyl)-carboran-2-yl)-(4-tolyl)-borane, a new bis(o-carboranyl)-(R)-borane 1 was synthesised by lithiation of the o-carboranyl precursor and subsequent salt metathesis reaction with (4-tolyl)BBr2. 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 S1 excited state of 1.
2. The choice of backbone linker for ortho-bis-(9-borafluorene)s has a great influence on the LUMO located at the boron centers and therefore the reactivity of the respective compounds. Herein, we report the room temperature rearrangement of 1,2-bis-(9-borafluorenyl-)-ortho-carborane, C2B10H10-1,2-[B(C12H8)]2 ([2a]) featuring o-carborane as the inorganic three-dimensional backbone and the synthesis of 1,2-bis-(9-borafluorenyl-)benzene, C6H4-1,2-[B(C12H8)]2 (2b) its phenylene analog. DFT calculations on the transition state for the rearrangement support an intramolecular C–H bond activation process via an SEAr-like mechanism in [2a], and predicted that the same rearrangement would take place in 2b, but at elevated temperatures, which indeed proved to be the case.
3. We synthesized 4 a julolidine-like pyrenyl-o-carborane, with pyrene substituted at the 2,7-positions on the HOMO/LUMO nodal plane, continuing our research. Using solid state molecular structures, photophysical data, cyclic voltammetry, DFT and TD-DFT calculations we compare o-carborane and the B(mes)2 (mes = 2,4,6-Me3C6H2) as acceptor groups and confirm the julolidine-like donor strength.
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.
Die Dissertationsschrift befasst sich mit der Synthese, Charakterisierung sowie Reaktivität spezieller Borheterocyclen und lässt sich in drei Themengebiete gliedern.
Der erste Teil behandelt die Reaktivität des elektronisch stabilisierten 1-Ferrocenyl-2,3,4,5-tetraphenylborols gegenüber klassischen Substraten für Ringerweiterungsreaktionen von Borolen. Der zweite Abschnitt beschreibt post-synthetische Funktionalisierungen von 1,2-Azaborininen. Dargestellte Boryl-substituierte 1,2-Azaborinine konnten in BN-analoge Verbindungen von Borafluorenen überführt werden. Ferner gelang die Isolierung eines zweifach BN-substituierten Phenanthrenderivats. Im dritten Teil erfolgt eine kritische Auseinandersetzung mit anerkannten Zusammenhängen der Reaktionen von B-funktionalisierten 2,3,4,5-Tetraphenylborolen gegenüber Diphenylacetylen.
Diese Arbeit beschäftigt sich mit der Synthese und Charakterisierung von mehrfach perfluoralkylierten Verbindungen.
Das erste Kapitel behandelt die Kupfer-vermittelte mehrfache Pentafluorethylierung von aromatischen Systemen, sowie die Untersuchung deren Folgechemie. Dabei wurden iodierte Aryl-Derivate mit dem Kupferorganyl CuC2F5 umgesetzt. Mit dieser Methode konnten symmetrisch und unsymmetrisch pentafluorethylierte Anilin- und Phenol-Derivate dargestellt werden. Die Anilin-Derivate wurden zu den entsprechenden Diazoniumsalzen umgesetzt, welche zunächst vollständig charakterisiert und anschließend deren Folgechemie untersucht wurde.
Das zweite Kapitel behandelt die Darstellung von Bis(trifluormethyl)sulfon durch elektrochemische Fluorierung mittels des Simons-Prozesses. Dabei wurde der Umsatz der Reaktion durch Verwendung der teilfluorierten Verbindung (Trifluormethyl)methylsulfon als Startmaterial optimiert.
N-heterocyclic carbenes (NHC) are utilized for the stabilization of reactive compounds, for the activation of strong bonds, and as ligands in transition metal chemistry. In contrast to neutral NHCs, few examples of anionic or even dianionic NHCs are known. One approach for the synthesis of anionic carbenes is the deprotonation of neutral or anionic precursors, bearing Lewis acids instead of alkyl or aryl substituents. Following this strategy, novel anionic and dianionic NHCs, featuring weakly coordinating fluorinated borane and phosphorane substituents or coordinating tricyanoborane substituents were synthesized within the scope of this thesis. These carbenes possess unprecedented stabilities compared to related species. Furthermore, their electronic and steric properties can be directly adjusted by the type of Lewis acid attached. Their potential as ligands with highly shielding weakly coordinating substituents next to the carbene coordination center was demonstrated by the syntheses of the respective NHC selenium adducts and NHC gold(I) complexes. In contrast anionic NHCs with coordinating tricyanoborane moieties have an outstanding potential as ditopic ligands with coordination being possible at the carbene center and via the cyano groups. Their beneficial ligand properties were demonstrated by the syntheses of the respective NHC selenium adducts and NHC nickeltricarbonyl complexes. The combination of electronic properties, the large buried volume, the negative charge, the possibility to act as ditopic or ligands with weakly coordinating groups, and the ease of accessibility render borane- and phosphorane functionalized NHCs unique novel ligands. A further project of this PhD thesis deals with the steric properties of Lewis acids. Therefore, an easy-to-apply model was designed to quantify the steric demand of Lewis acids. Using the results of this evaluation, a second model was developed which judges the steric repulsion in Lewis acid/base adduct formation for arbitrary sets of acids and bases.