Teichmann J, Wagner M
Institut für Anorganische Chemie, Goethe-Universität Frankfurt am Main, Max-von-Laue-Straße 7, 60438 Frankfurt am Main, Germany.
Chem Commun (Camb). 2018 Feb 11;54(12):1397-1412. doi: 10.1039/c7cc09063c. Epub 2018 Jan 23.
Silylenes and silanides, prominent Si(ii) species, are not only interesting in their own right, but also constitute important building blocks in oligosilane and organosilane chemistry. The past decade has witnessed tremendous advances in the understanding of the ambiphilic behavior of silylenes and the nucleophilic properties of silanides, as well as the mutual relationships between both species. Especially the readily available SiCl/[SiCl] system is intriguing, because it features highly functionalized silicon centers, amenable to late-stage modifications. Moreover, SiCl and [SiCl] are interconvertible by mere chloride association/dissociation. This Feature Article first provides a brief introduction to isolable (functionalized) silylenes and silanides and then focusses on the SiCl/[SiCl] couple. Classical high-temperature protocols for the generation of SiCl are juxtaposed with convenient recent solution phase methods that provide access to RN-SiCl and [SiCl]via deprotonation of HSiCl or the amine-/chloride-induced disproportionation of SiCl. We give a comprehensive overview of key mechanistic issues and highlight the utility of RN-SiCl and [SiCl] for the synthesis of open-chain and cyclic oligosilanes as well as nanoscale, fullerene-type silicon clusters.
硅烯和硅化物是重要的二价硅物种,它们不仅本身具有趣味性,而且是低聚硅烷和有机硅烷化学中的重要结构单元。在过去十年中,人们对硅烯的双亲性行为和硅化物的亲核性质以及这两种物种之间的相互关系有了巨大的认识进展。特别是易于获得的SiCl/[SiCl]体系很有趣,因为它具有高度官能化的硅中心,适合后期修饰。此外,SiCl和[SiCl]仅通过氯的缔合/解离即可相互转化。这篇专题文章首先简要介绍了可分离的(官能化的)硅烯和硅化物,然后重点介绍了SiCl/[SiCl]对。用于生成SiCl的经典高温方法与最近方便的溶液相方法并列,后者通过HSiCl的去质子化或胺/氯诱导的SiCl歧化反应来制备RN-SiCl和[SiCl]。我们全面概述了关键的机理问题,并强调了RN-SiCl和[SiCl]在合成开链和环状低聚硅烷以及纳米级富勒烯型硅簇方面的实用性。