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使用稳定且易于处理的替代物进行 SiH4 的化学计量学研究。

Formal SiH4 chemistry using stable and easy-to-handle surrogates.

机构信息

Institut für Chemie, Technische Universität Berlin, Strasse des 17. Juni 115, 10623 Berlin, Germany.

出版信息

Nat Chem. 2015 Oct;7(10):816-22. doi: 10.1038/nchem.2329. Epub 2015 Aug 24.

Abstract

Monosilane (SiH4) is far less well behaved than its carbon analogue methane (CH4). It is a colourless gas that is industrially relevant as a source of elemental silicon, but its pyrophoric and explosive nature makes its handling and use challenging. Consequently, synthetic applications of SiH4 in academic laboratories are extremely rare and methodologies based on SiH4 are underdeveloped. Safe and controlled alternatives to the substituent redistribution approaches of hydrosilanes are desirable and cyclohexa-2,5-dien-1-ylsilanes where the cyclohexa-1,4-diene units serve as placeholders for the hydrogen atoms have been identified as potent surrogates of SiH4. We disclose here that the commercially available Lewis acid tris(pentafluorophenyl)borane, B(C6F5)3, is able to promote the release of the Si-H bond catalytically while subsequently enabling the hydrosilylation of C-C multiple bonds in the same pot. The net reactions are transition-metal-free transfer hydrosilylations with SiH4 as a building block for the preparation of various hydrosilanes.

摘要

硅烷(SiH4)的行为远不如其碳类似物甲烷(CH4)稳定。它是一种无色气体,在工业上作为元素硅的来源具有重要意义,但由于其易燃和易爆的性质,使得其处理和使用具有挑战性。因此,SiH4 在学术实验室中的合成应用极其罕见,基于 SiH4 的方法也尚未得到充分发展。安全且可控的替代方案取代了硅烷的取代重排方法,其中环己二烯-1,4-二烯单元作为 SiH4 的氢原子的占位基团,已被确定为 SiH4 的有效替代品。我们在这里披露,商业上可获得的路易斯酸三(五氟苯基)硼烷,B(C6F5)3,能够催化释放 Si-H 键,同时随后能够在同一锅中使 C-C 多重键进行硅氢化反应。总反应是无过渡金属的转移硅氢化反应,SiH4 作为构建块用于制备各种硅烷。

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