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首页> 外文期刊>European journal of organic chemistry >Computational Study of the Cu-Free Allylic Alkylation Mechanism with Grignard Reagents: Role of the NHC Ligand
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Computational Study of the Cu-Free Allylic Alkylation Mechanism with Grignard Reagents: Role of the NHC Ligand

机译:GRIGNARD试剂的无烯丙基烯丙基烷基化机理的计算研究:NHC配体的作用

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摘要

The mechanism of Cu-free allylic alkylation reactions catalyzed by an NHC ligand with Grignard reagents has been explored by using the hybrid B3PW91 DFT method. The nature of the bonding of the active Mg species, which was validated by reference to the 13C NMR chemical shift, was found to be highly ionic. In particular, a strong nucleophilic Mg-R (R = CH_3) bond was explained by the activation of the NHC Lewis base ligand on Mg. The effect of ethereal solvent was examined by using explicit dimethyl ether solvent and a density-based solvation model. An adequate representation of solvation is required to properly reproduce the formation of the supposed active species. The mechanism of the allylic alkylation emphasizes the bifunctional role of the Mg center that activates both the nucleophile and nucleofuge promoting an SN_2-type mechanism. The NHC ligand bonded to Mg is crucial and activates the Mg-R bond favoring C-C bond formation.
机译:通过使用杂交B3PW91 DFT方法探讨了NHC配体催化的无烯丙基烷基化反应的机制,通过杂交B3PW91 DFT方法探索了GRIGNARD试剂。 发现活性Mg物种的键合的性质,通过引用13C NMR化学转移验证,是高度离子的。 特别地,通过在Mg上的NHC Lewis碱配体的活化来解释强亲核Mg-R(R = CH_3)键。 通过使用显式二甲醚溶剂和基于密度的溶剂化模型来检查醚溶剂的效果。 需要足够的溶剂化结果来适当地繁殖所谓的活性物质的形成。 烯丙基烷基化的机制强调MG中心的双官能作用,其激活促进促进SN_2型机制的亲核官能团。 与Mg键合的NHC配体是至关重要的,并激活有利于C-C键形成的Mg-R键。

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