Systematic Study of N-Heterocyclic Carbene Coordinate Hydrosilylene Transition-Metal Complexes.

Inorg Chem

Department of Chemistry, Catalysis Research Center and WACKER-Institute of Silicon Chemistry, Technical University of Munich, Lichtenbergstraße 4, D-85747 Garching, Germany.

Published: August 2017

An in-depth study of the synthesis and structures of N-heterocyclic carbene (NHC)-stabilized silylene transition-metal complexes is reported. An iron hydrosilylene complex, [tBuSi(NHC)(H)Si:→Fe(CO)] (2), was synthesized starting from the corresponding hydrosilylene [tBuSi(NHC)(H)Si:] (1). Complex 2 was fully characterized, including X-ray diffraction analysis, which showed an unusual long Si-Fe bond length. A very long bond length was also observed in the novel hydrosilylene tungsten complex [tBuSi(NHC)(H)Si:→W(CO)] (3). A series of NHC-stabilized silylene iron complexes ([R(NHC)Si:→Fe(CO)], where R = Cl (4), H (5), and Me (6)) were synthesized and fully characterized to investigate the influence of different substituents. The dihydrosilylene iron complex [H(NHC)Si:→Fe(CO)] (5) represents a new example of a donor-acceptor-stabilized parent silylene (HSi:). Density functional theory calculations were utilized to understand the influence of the electronic and steric effects of the silylene unit and its substituents on the Si-Fe bond in these iron complexes, in particular to rationalize the long Si-Fe bond in 2.

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http://dx.doi.org/10.1021/acs.inorgchem.7b01541DOI Listing

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