Department of Chemistry, McMaster University, 1280 Main St. West, Hamilton, Ontario, L8S 4M1, Canada.
Angew Chem Int Ed Engl. 2017 May 22;56(22):6223-6227. doi: 10.1002/anie.201700863. Epub 2017 Mar 15.
Reaction of the ethylene hydride complex trans-[(dmpe) MnH(C H )] (1) with Et SiH at 20 °C afforded the silylene hydride [(dmpe) MnH(=SiEt )] (2 a) as the trans-isomer. By contrast, reaction of 1 with Ph SiH at 60 °C afforded [(dmpe) MnH(=SiPh )] (2 b) as a mixture of the cis (major) and trans (minor) isomers, featuring a Mn-H-Si interaction in the former. The reaction to form 2 b also yielded [(dmpe) MnH (SiHPh )] (3 b); [(dmpe) MnH (SiHR )] (R=Et (3 a) and Ph (3 b)) were accessed cleanly by reaction of 2 a and 2 b with H , and the analogous reactions with D afforded [(dmpe) MnD (SiHR )] exclusively. Both 2 a and 2 b engaged in unique reactivity with ethylene, generating the silene hydride complexes cis-[(dmpe) MnH(R Si=CHMe)] (R=Et (4 a), Ph (4 b)). Compounds trans-2 a, cis-2 b, 3 b, and 4 b were crystallographically characterized, and bonding in 2 a, 2 b, 4 a, and 4 b was probed computationally.
乙烯氢化物复合物反式-[(dmpe)MnH(CH)](1)与 EtSiH 在 20°C 反应,生成 silylene 氢化物[(dmpe)MnH(=SiEt)](2a),为反式异构体。相比之下,1 与 PhSiH 在 60°C 反应,生成[(dmpe)MnH(=SiPh)](2b),为顺式(主要)和反式(次要)异构体的混合物,前者具有 Mn-H-Si 相互作用。形成 2b 的反应还生成了[(dmpe)MnH(SiHPh)](3b);[(dmpe)MnH(SiHR)](R=Et(3a)和 Ph(3b))通过 2a 和 2b 与 H 的反应干净地得到,而用 D 进行类似的反应则仅得到[(dmpe)MnD(SiHR)]。2a 和 2b 都与乙烯发生了独特的反应,生成了硅烯氢化物复合物顺式-[(dmpe)MnH(RSi=CHMe)](R=Et(4a),Ph(4b))。反式-2a、顺式-2b、3b 和 4b 被晶体学表征,并通过计算研究了 2a、2b、4a 和 4b 的成键情况。