Recent Advances in the Electrochemical Defluorinative Transformations of C—F Bonds

化学 电合成 电化学 有机合成 试剂 烷基化 胺化 反应性(心理学) 芳基 烷基 组合化学 有机化学 物理化学 电极 催化作用 医学 替代医学 病理
作者
Qinhui Wan,Ruixue Liu,Zhongyi Zhang,Xia‐Die Wu,Zhong‐Wei Hou,Lei Wang
出处
期刊:Chinese Journal of Chemistry [Wiley]
卷期号:42 (16): 1913-1928 被引量:17
标识
DOI:10.1002/cjoc.202400058
摘要

Comprehensive Summary Organic fluorine compounds are ubiquitous and pivotally important organic molecules, yet their activation and transformation have long been a formidable challenge due to the high energy and low reactivity of C—F bonds. Organic electrosynthesis, an environmentally benign synthetic method in organic chemistry, enables a myriad of chemical transformations without the need for external redox reagents. In recent years, organic electrochemistry has emerged as a powerful tool for achieving the activation and transformation of C—F bonds in fluorine‐containing compounds. This review aims to succinctly recapitulate the latest advancements in the electrochemical defluorinative transformations of C—F bonds and to delve into the reaction design, mechanistic insights, and developmental prospects of these methods. Key Scientists In 1959, Lund was the first to pioneer the electroreduction of CF 3 to CH 3 group. Electrochemistry has lately provided new opportunities for efficient conversion of organic fluorides. In 2020, Zhou and coworkers discovered the electrochemical defluorinative carboxylation of α‐CF 3 alkenes. Lambert and colleagues reported electrophotocatalytic defluorinative amination of aryl fluorides. Electrochemical hydrodefluorination of trifluoromethylketones was developed by Lennox and coworkers in 2021. In the same year, Wang and Guo disclosed electrochemical radical defluorinative alkylation of α‐CF 3 alkenes with Katritzky salts as the alkyl radical precursors. Subsequently, Wu and Liao described a transition‐metal‐free, site‐selective C—F arylation of polyfluoroarenes with (het)arenes using paired electrophotocatalysis. In 2023, numerous efforts were made to achieve electrochemical C—F bond activation. Xia and Guo developed an organoboron‐controlled method for the chemoselective electrochemical sequential (deutero)hydrodefluorination of trifluoroacetamides.
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