McOnie Sarah L, Özpınar Gül Altınbaş, Bourque Jeremy L, Müller Thomas, Baines Kim M
Department of Chemistry, University of Western Ontario, London, Ontario, Canada N6A 5B7.
Institut für Chemie, Carl von Ossietzky Universität Oldenburg, D-26129 Oldenburg, Federal Republic of Germany, European Union.
Dalton Trans. 2021 Dec 7;50(47):17734-17750. doi: 10.1039/d1dt03739k.
The NH bond activation of ammonia, primary and secondary amines by tetramesityldisilene and -digermene was investigated. In each case, a disilyl- or digermylamine was formed as the only product of amine addition. The mechanism of the addition of ammonia to tetramesityldisilene was computed and revealed a three-step reaction pathway: formation of the -ammonia-disilene adduct, inversion at the β-silicon, and -transfer of the proton to give the -product, where each step follows a distinct stereochemical course. Examination of the reaction landscape also revealed several additional insights: (a) that, in the initial step, the formation of the -oriented zwitterionic intermediate is kinetically more preferable than formation of the -oriented zwitterionic intermediate, (b) that intermolecular transfer of a proton is not energetically feasible in non-polar solvents, and (c) that the bulk of the substituents can have a profound effect on the stereochemical course of the reaction. With this detailed understanding, nucleophilic additions to ditetrelenes can be exploited in the future.
研究了四甲基二硅烯和四甲基二锗烯对氨、伯胺和仲胺的N-H键活化作用。在每种情况下,二硅基胺或二锗基胺都是胺加成的唯一产物。计算了氨与四甲基二硅烯加成的机理,揭示了一个三步反应途径:形成氨-二硅烯加合物、β-硅原子处的构型翻转以及质子转移生成产物,其中每一步都遵循不同的立体化学过程。对反应态势的研究还揭示了几个额外的见解:(a) 在初始步骤中,形成取向为的两性离子中间体在动力学上比形成取向为的两性离子中间体更有利;(b) 在非极性溶剂中,质子的分子间转移在能量上是不可行的;(c) 取代基的体积对反应的立体化学过程有深远影响。有了这种详细的理解,未来可以利用对二四价元素烯的亲核加成反应。