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Im Rahmen dieser Arbeit wurde die Reaktivität des Phosphorans (C2F5)3PF2 gegenüber Lewis-Basen (N-heterozyklische Carbene und Phosphane) und gegenüber verschiedenen Übergangsmetall-Fluoridokomplexen untersucht. Im ersten Teil werden die Lewis-Säure/Base-Addukte zwischen (C2F5)3PF2 und verschiedenen
N-heterozyklischen Carbenen (NHCs) beschrieben. Der Fokus des zweiten Teils der Arbeit liegt auf der Darstellung kationischer Komplexe ausgehend von neutralen d-Block-Metallfluoriden, welche durch Fluorid-Transfer auf das Lewis-acide (C2F5)3PF2 erfolgt. Hierbei wurden Komplexe verschiedener Übergangsmetalle (Ti, Ni, Cu) verwendet, wodurch der Fluorid-Transfer auf das Phosphoran quer über die 3d-Reihe untersucht wurde. Im letzten Kapitel dieser Arbeit wurden die Synthese und die Anwendung von Kationen des Typs [(NHC)Cu]+ eingehender untersucht. Dazu wurde zunächst die Synthese der Ausgangsverbindungen [(NHC)Cu(F)] modifiziert. Anschließend wurden diese Fluorido-Komplexe auf deren Reaktivität gegenüber (C2F5)3PF2 untersucht. Nachfolgend wurden die Reaktivität von [(Dipp2Im)Cu(C6Me6)]FAP in Ligandenaustauschreaktionen bzw. die Synthese von Komplexen [(Dipp2Im)Cu(LB)]FAP (LB = Lewis-Base) eingehender untersucht.
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.