Yang Zhenghai, Doddipatla Srinivas, He Chao, Krasnoukhov Vladislav S, Azyazov Valeriy N, Mebel Alexander M, Kaiser Ralf I
Department of Chemistry, University of Hawai'i at Manoa, Honolulu, HI, 96822, USA.
Samara National Research University, Samara, 443086, Russian Federation.
Chemistry. 2020 Oct 27;26(60):13584-13589. doi: 10.1002/chem.202002359. Epub 2020 Oct 4.
The silene molecule (H SiCH ; X A ) has been synthesized under single collision conditions via the bimolecular gas phase reaction of ground state methylidyne radicals (CH) with silane (SiH ). Exploiting crossed molecular beams experiments augmented by high-level electronic structure calculations, the elementary reaction commenced on the doublet surface through a barrierless insertion of the methylidyne radical into a silicon-hydrogen bond forming the silylmethyl (CH SiH ; X A') complex followed by hydrogen migration to the methylsilyl radical (SiH CH ; X A'). Both silylmethyl and methylsilyl intermediates undergo unimolecular hydrogen loss to silene (H SiCH ; X A ). The exploration of the elementary reaction of methylidyne with silane delivers a unique view at the widely uncharted reaction dynamics and isomerization processes of the carbon-silicon system in the gas phase, which are noticeably different from those of the isovalent carbon system thus contributing to our knowledge on carbon silicon bond couplings at the molecular level.
已通过基态亚甲基自由基(CH)与硅烷(SiH)的双分子气相反应,在单次碰撞条件下合成了硅烯分子(H SiCH;X A)。利用交叉分子束实验并辅以高水平的电子结构计算,该基元反应在双重态表面开始,通过亚甲基自由基无障碍地插入硅氢键形成甲硅烷基甲基(CH SiH;X A')络合物,随后氢迁移至甲基硅基自由基(SiH CH;X A')。甲硅烷基甲基和甲基硅基中间体均经历单分子氢损失生成硅烯(H SiCH;X A)。对亚甲基与硅烷基元反应的探索为气相中碳硅体系广泛未知的反应动力学和异构化过程提供了独特视角,这些过程与等价碳体系的明显不同,从而有助于我们在分子水平上了解碳硅键耦合。