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Selectivity control in alkylidene carbene-mediated C-H insertion and allene formation

机译:亚烷基卡宾介导的C-H插入和丙二烯形成中的选择性控制

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摘要

Regioselectivity of alkylidene carbene-mediated C-H insertion was explored utilizing electronic, conformational, steric, and stereoelectronic effects. Relying on these factors, highly regio-and chemoselective carbene insertion reaction of C-H bonds in different environments could be obtained. The observed selectivity clearly indicates that an electronic effect plays a more important role than steric effect. In general, C-H bonds in conformationally rigid cyclic environments are less reactive than those in acyclic systems toward carbene insertion, and in this situation, a competing intermolecular reaction between alkylidene carbene and trimethylsilyldiazomethane led to the formation of allenylsilanes. The formation of allenylsilane becomes more favorable as the concentration of reaction becomes higher, as well as the C-H bonds undergoing insertion becomes electronically and conformationally deactivated.
机译:利用电子,构象,空间和立体电子效应探索了亚烷基卡宾介导的C-H插入的区域选择性。依靠这些因素,可以获得在不同环境中C-H键的高度区域和化学选择性的卡宾插入反应。观察到的选择性清楚地表明,电子效应比空间效应起着更重要的作用。通常,构象刚性环状环境中的C-H键比无环体系中的碳烯键对卡宾的反应性小,在这种情况下,亚烷基卡宾与三甲基甲硅烷基重氮甲烷之间的竞争分子间反应导致烯丙基硅烷的形成。随着反应浓度的升高,烯丙基硅烷的形成变得更有利,并且经历插入的C-H键电子和构象失活。

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