促进 Ni(II) 物种还原消除的机理认识

IF 4.2 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Bolin Qiao, Fa-You Lin, Dongmin Fu, Shi-Jun Li, Tao Zhang and Yu Lan
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引用次数: 0

摘要

还原消除是镍催化交叉耦合的一个关键步骤,通常被认为会产生新的共价键。由于镍(II)物种的氧化能力较弱,因此从镍(II)中心进行还原消除具有挑战性。对这一过程进行透彻的机理理解,可以激发对镍催化偶联反应的合理设计。在本文中,我们将概述本课题组在 Ni(II) 中心还原消除机理研究方面取得的最新进展。研究和讨论了镍(II)物种还原消除的三种可能模式,包括直接还原消除、电子密度控制的还原消除和氧化诱导的还原消除。值得注意的是,镍(II)物种的直接还原消除在某些情况下往往需要很高的活化能。相比之下,电子密度控制和氧化诱导的还原消除途径可显著增强还原消除的驱动力,加速新共价键的形成。本文对上述每种途径的复杂反应机制进行了深入讨论和系统总结。这些计算研究展示了镍(II)物种还原消除的三种模型的特点,我们希望它能推动交叉耦合反应机理研究的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mechanistic insights into facilitating reductive elimination from Ni(ii) species

Mechanistic insights into facilitating reductive elimination from Ni(ii) species

Reductive elimination is a key step in Ni-catalysed cross-couplings, which is often considered to result in new covalent bonds. Due to the weak oxidizing ability of Ni(II) species, reductive eliminations from Ni(II) centers are challenging. A thorough mechanistic understanding of this process could inspire the rational design of Ni-catalysed coupling reactions. In this article, we give an overview of recent advances in the mechanistic study of reductive elimination from Ni(II) species achieved by our group. Three possible models for reductive elimination from Ni(II) species were investigated and discussed, including direct reductive elimination, electron density-controlled reductive elimination, and oxidation-induced reductive elimination. Notably, the direct reductive elimination from Ni(II) species often requires a high activation energy in some cases. In contrast, the electron density-controlled and oxidation-induced reductive elimination pathways can significantly enhance the driving force for reductive elimination, accelerating the formation of new covalent bonds. The intricate reaction mechanisms for each of these pathways are thoroughly discussed and systematically summarized in this paper. These computational studies showcase the characteristics of three models for reductive elimination from Ni(II) species, and we hope that it will spur the development of mechanistic studies of cross-coupling reactions.

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来源期刊
Chemical Communications
Chemical Communications 化学-化学综合
CiteScore
8.60
自引率
4.10%
发文量
2705
审稿时长
1.4 months
期刊介绍: ChemComm (Chemical Communications) is renowned as the fastest publisher of articles providing information on new avenues of research, drawn from all the world''s major areas of chemical research.
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