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Structure–Reactivity Relationships in the Hydrogenation of Carbon Dioxide with Ruthenium Complexes Bearing Pyridinylazolato Ligands
Authors:Dipl. Chem. Keven Muller  Dr. Yu Sun  Andreas Heimermann  Fabian Menges  Gereon Niedner‐Schatteburg  Christoph van Wüllen  Prof. Dr. Werner R. Thiel
Affiliation:Fachbereich Chemie, Technische Universit?t Kaiserslautern, Erwin‐Schr?dinger‐Str. 52–54, 67663 Kaiserslautern (Germany), Fax: (+49)?631 2054676
Abstract:Pyridinylazolato (N–N′) ruthenium(II) complexes of the type [(N–N′)RuCl(PMe3)3] have been obtained in high yields by treating the corresponding functionalised azolylpyridines with [RuCl2(PMe3)4] in the presence of a base. 15N NMR spectroscopy was used to elucidate the electronic influence of the substituents attached to the azolyl ring. The findings are in agreement with slight differences in the bond lengths of the ruthenium complexes. Furthermore, the electronic nature of the azolate moiety modulates the catalytic activity of the ruthenium complexes in the hydrogenation of carbon dioxide under supercritical conditions and in the transfer hydrogenation of acetophenone. DFT calculations were performed to shed light on the mechanism of the hydrogenation of carbon dioxide and to clarify the impact of the electronic nature of the pyridinylazolate ligands.
Keywords:carbon dioxide  hydrogenation  nitrogen heterocycles  phosphanes  ruthenium
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