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官能化低聚硅烷中 Si-Si 和 Si-C 键的竞争:它们与元素锂的反应性。

The competition between Si-Si and Si-C cleavage in functionalised oligosilanes: their reactivity with elemental lithium.

机构信息

Anorganische Chemie, Technische Universität Dortmund, Otto-Hahn-Strasse 6, 44227 Dortmund, Germany.

出版信息

Dalton Trans. 2010 Feb 28;39(8):2062-9. doi: 10.1039/b920846a. Epub 2010 Jan 14.

Abstract

The reaction of aryl-substituted disilanes with elemental lithium is a common method for the preparation of lithiosilanes and the subsequent synthesis of functionalised oligosilanes, especially of enantiomerically pure compounds. A series of alkyl- and arylsubstituted di- and trisilanes has been investigated with respect to their reactivity against elemental lithium. Thereby, depending on the substituents, silicon-silicon bond cleavage of the central Si-Si unit and/or silicon-carbon bond cleavage to arenes are observed. Quantum chemical studies provide a deeper insight into the ongoing processes. The reactive centre can be estimated by both, bond elongation after electron transfer and frontier orbital interactions (pi-bonding and sigma-antibonding part). Aromatic substituents at the silicon atoms proved to be necessary for the processing of any cleavage reaction in the studied systems by stabilising the radical anion after electron transfer at the corresponding di- or trisilane. Yet, selective cleavage reactions do not depend on the number of arenes.

摘要

芳基取代二硅烷与元素锂的反应是制备硅锂试剂和随后合成功能化低聚硅烷的常用方法,特别是对映纯化合物。研究了一系列烷基和芳基取代的二硅烷和三硅烷,以考察它们与元素锂的反应活性。由此,根据取代基的不同,观察到中心 Si-Si 单元的硅-硅键断裂和/或与芳烃的硅-碳键断裂。量子化学研究提供了对正在进行的过程的更深入了解。反应中心可以通过电子转移后的键伸长和前沿轨道相互作用(π键和σ反键部分)来估计。硅原子上的芳基取代基被证明对于在研究体系中进行任何裂解反应是必要的,通过在相应的二硅烷或三硅烷中电子转移后稳定自由基阴离子。然而,选择性裂解反应并不取决于芳环的数量。

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