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重新审视二胺促进的无过渡金属交叉偶联反应的自由基引发机理。

Revisiting the Radical Initiation Mechanism of the Diamine-Promoted Transition-Metal-Free Cross-Coupling Reaction.

机构信息

Center of Basic Molecular Science (CBMS), Department of Chemistry, Tsinghua University , Beijing 100084, China.

出版信息

J Am Chem Soc. 2016 Jun 8;138(22):7151-60. doi: 10.1021/jacs.6b03442. Epub 2016 May 26.

Abstract

Radical chain reactions leading to C-C bond formation are widely used in organic synthesis, and initiation of the radical chain process usually requires thermolabile radical initiators. Recent studies on transition-metal-free cross-coupling reactions between aryl halides and arenes have demonstrated an unprecedented initiation system for radical chain reactions, where the combination of simple organic additives and a base was used in place of conventional radical initiators. Among them, the combination of N,N'-dimethylethylenediamine (DMEDA) and t-BuOK is one of the most efficient and representative reaction systems, and the radical initiation mechanism of this system has attracted considerable research interest. In this study, through the combination of kinetic studies, deuterium labeling experiments, and DFT calculations, the radical initiation mechanism of the diamine-promoted cross-coupling reaction was carefully reinvestigated. In light of the present study, a mechanistic network of radical initiation in the DMEDA/t-BuOK system was revealed, which differs dramatically from the previously realized single radical initiation pathway. In this mechanism, the diamine acts as a hydrogen atom donor and plays a dual role as both "radical amplifier" and "radical regulator" to initiate the radical chain process as well as to control the concentration of reactive radical species. This represents a rare example of a structurally simple molecule playing such a subtle role in the radical chain reaction system. The present study sheds some light on the novel radical initiation mode in transition-metal-free cross-coupling reactions following a base-promoted homolytic aromatic substitution (BHAS) mechanism, and may also help to understand the mechanism of relevant reactions.

摘要

引发自由基链反应的自由基引发剂通常不稳定,需要在高温下才能引发反应,因此在有机合成中,自由基链反应广泛用于 C-C 键的形成。近年来,研究人员在无过渡金属参与的芳基卤化物与芳烃的交叉偶联反应中发现了一种前所未有的自由基链反应引发体系,该体系用简单的有机添加剂和碱代替了传统的自由基引发剂。其中,N,N'-二甲乙二胺(DMEDA)和 t-BuOK 的组合是最有效和最具代表性的反应体系之一,该体系的自由基引发机制引起了广泛的研究兴趣。在本研究中,通过动力学研究、氘标记实验和 DFT 计算的结合,仔细重新研究了二胺促进的交叉偶联反应的自由基引发机制。根据本研究,揭示了 DMEDA/t-BuOK 体系中自由基引发的机理网络,与之前提出的单一自由基引发途径有很大的不同。在这个机制中,二胺作为氢原子供体,同时扮演“自由基放大器”和“自由基调节剂”的双重角色,引发自由基链反应,并控制反应性自由基物种的浓度。这代表了一种结构简单的分子在自由基链反应体系中发挥如此微妙作用的罕见例子。本研究为无过渡金属参与的交叉偶联反应中基于碱促进的均裂芳香取代(BHAS)机制的新型自由基引发模式提供了一些启示,也有助于理解相关反应的机制。

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