Recent advances in radical-based C–F bond activation of polyfluoroarenes and gem-difluoroalkenes

IF 4.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Junlei Wang, Han Gao, Chengcheng Shi, Guiling Chen, Xia Tan, Xuemei Chen, Lei Xu, Xiaodong Cai, Binbin Huang and Hongqing Li
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引用次数: 3

Abstract

The direct employment of polyfluoroarenes and gem-difluoroalkenes as building blocks is regarded as one of the most effective and straightforward strategies for the introduction of fluorine-containing moieties into organic skeletons. Accordingly, radical chemistry has gradually become a mild and powerful method for the activation of their C–F bonds. The radical-based transformations of polyfluoroarenes and gem-difluoroalkenes can be primarily categorized into three types based on the specific intermediates involved: (1) multifluoroaryl radical anions, (2) monofluoroalkenyl radicals and (3) other radicals. Compared with the more established multifluoroaryl radical anion pathway, the monofluoroalkenyl radical-involved cross-coupling reaction can proceed through C-radical cross-coupling, radical addition/elimination or the hydrogen atom transfer process. For the presented examples in this review, the typical reaction modes, substrate scope, radical-involved mechanisms, and late-stage applications in the modification of bioactive molecules are discussed, aiming to provide a comprehensive overview of the recent advances of the radical-based transformations of polyfluoroarenes and gem-difluoroalkenes.

Abstract Image

多氟芳烃和宝石-二氟烯烃自由基基C-F键活化研究进展
直接使用多氟芳烃和宝石二氟烯烃作为构件被认为是将含氟部分引入有机骨架的最有效和最直接的策略之一。因此,自由基化学逐渐成为激活它们的C-F键的一种温和而有力的方法。根据所涉及的特定中间体,多氟芳烃和gem-二氟烯烃的自由基基转化主要可分为三种类型:(1)多氟芳基自由基阴离子,(2)单氟烯基自由基和(3)其他自由基。与更成熟的多氟芳基自由基阴离子途径相比,单氟烯基自由基参与的交叉偶联反应可以通过c自由基交叉偶联、自由基加成/消除或氢原子转移过程进行。本文综述了聚氟芳烃和宝石二氟烯烃自由基基转化的典型反应方式、底物范围、自由基参与机理以及在生物活性分子改性中的后期应用,综述了近年来聚氟芳烃和宝石二氟烯烃自由基基转化的研究进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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