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无负载有机硅烷的可逆C(sp)-Si氧化加成:硅取代基对动力学和热力学的影响

Reversible C(sp)-Si Oxidative Addition of Unsupported Organosilanes: Effects of Silicon Substituents on Kinetics and Thermodynamics.

作者信息

Chapp Scott M, Schley Nathan D

机构信息

Department of Chemistry, Vanderbilt University, Nashville, Tennessee 37235 United States.

出版信息

J Am Chem Soc. 2021 Apr 14;143(14):5534-5539. doi: 10.1021/jacs.1c01564. Epub 2021 Mar 30.

Abstract

The intermolecular oxidative addition of unactivated C(sp)-Si bonds is reported for a family of organosilanes at a cationic pincer-supported iridium complex. To our knowledge, no examples of oxidative addition to give analogous unsupported (alkyl)metal silyl complexes have been previously reported. The generality of this transformation is excellent, with successful examples demonstrated for tetraorganosilanes, mono- and poly alkoxysilanes, and two siloxysilanes. Oxidative addition is found to be completely reversible, with the product of reductive elimination being subject to trapping by triethylsilane. The successful isolation of these metal silyl complexes has allowed for an in-depth kinetic analysis of C(sp)-Si reductive elimination, a process with strong implications in both catalytic C-H silylation and olefin hydrosilylation. The apparent order of reactivity is SiMe > SiMe(CF) > SiMeOSiMe > SiMeOSiMeOSiMe > SiMe(OMe) > SiMe(OEt) > SiMe(OMe). A DFT analysis of the oxidative addition products shows that the thermodynamic stability of the (alkyl)metal silyl complexes span a range of ca. 10 kcal·mol, which relate closely with the experimentally determined rates of C(sp)-Si reductive elimination and trapping, though a clear kinetic distinction exists between methoxy- and siloxysilyl complexes.

摘要

据报道,在阳离子钳形配体支持的铱配合物作用下,一类有机硅烷发生了未活化的C(sp)-Si键的分子间氧化加成反应。据我们所知,此前尚未报道过氧化加成生成类似的无配体(烷基)金属硅基配合物的例子。这种转化具有很好的普遍性,四有机硅烷、单烷氧基硅烷和聚烷氧基硅烷以及两种硅氧基硅烷都有成功的例子。发现氧化加成是完全可逆的,还原消除产物会被三乙硅烷捕获。这些金属硅基配合物的成功分离使得能够对C(sp)-Si还原消除进行深入的动力学分析,这一过程在催化C-H硅基化和烯烃硅氢化反应中都具有重要意义。反应活性的明显顺序为SiMe > SiMe(CF) > SiMeOSiMe > SiMeOSiMeOSiMe > SiMe(OMe) > SiMe(OEt) > SiMe(OMe)。对氧化加成产物的密度泛函理论(DFT)分析表明,(烷基)金属硅基配合物的热力学稳定性范围约为10 kcal·mol,这与实验测定的C(sp)-Si还原消除和捕获速率密切相关,不过甲氧基硅基和硅氧基硅基配合物之间存在明显的动力学差异。

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