A nickel-catalysed radical mechanism by three-component dimensionality reduction strategies: a theoretical study

IF 7.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Lin-Yan Bao, Rong-Wan Gao, Bo Zhu, Zhong-Min Su, Wei Guan
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引用次数: 0

Abstract

Three-component coupling reactions represent a potent approach for synthesizing complex products. Radical-initiated three-component coupling reactions hold significant promise in synthetic chemistry but are often challenged by the high reactivity of radical species and the complex coordination environment of transition metal catalysts. Herein, we employed density functional theory (DFT) and ab initio molecular dynamics (AIMD) simulations to investigate the mechanism of three-component olefin difunctionalization. Our study reveals that the dimensionality reduction in multi-component coupling reactions is fundamentally governed by a metal-free radical–radical cycle mechanism. A concentration-driven coordination mode shift modulates the reactivity of the Ni(0) centre, thereby enabling the multi-component reaction to proceed with high selectivity. Pauli repulsion plays a decisive role in determining enantiomeric isomerism in the radical capture step during two-component cross-coupling. This work provides a theoretical comprehension for the rational design of efficient radical-mediated multi-component coupling reactions.

Abstract Image

三组分降维策略下镍催化自由基机制的理论研究
三组分偶联反应是合成络合产物的有效途径。自由基引发的三组分偶联反应在合成化学中具有重要的应用前景,但由于自由基的高反应活性和过渡金属催化剂复杂的配位环境而受到挑战。本文采用密度泛函理论(DFT)和从头算分子动力学(AIMD)模拟研究了三组分烯烃双官能化的机理。我们的研究表明,多组分偶联反应的降维基本上是由金属自由基-自由基循环机制控制的。浓度驱动的配位模式转换调节了Ni(0)中心的反应活性,从而使多组分反应以高选择性进行。在双组分交叉耦合过程中,泡利斥力对自由基捕获步骤中对映异构体的异构性起决定性作用。这项工作为合理设计有效的自由基介导的多组分偶联反应提供了理论理解。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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