Electroreduction Strategy: A Sustainable Tool for Generation of Aryl Radicals

IF 4.6 1区 化学 Q1 CHEMISTRY, ORGANIC Organic Chemistry Frontiers Pub Date : 2024-06-15 DOI:10.1039/d4qo00846d
Xiao-Qing Xie, Wei Zhou, Ruchun Yang, Xian-Rong Song, Mu-Jia Luo, Qiang Xiao
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Abstract

Aryl radicals are important and versatile active intermediates in synthetic chemistry, and the chemical conversions involved are regarded as perfect complements to the transition-metal-catalyzed arylation reactions. The formation of aryl radicals is mainly achieved through reductive systems. Electrocatalysis has a safe and controllable potential range that can easily attain a reduction potential beyond the range of chemical reductants and excited photocatalysts, offering a synthetically attractive and environmentally friendly alternative for the production of aryl radicals. Remarkable achievements in the electrochemical functionalization of aryl radicals have been reported. This review primarily focuses on the generation of aryl radicals via electroreduction strategy, and systematically elaborates on synthetic applications, scope, and limitations of the substrates. A full spectrum of aryl radical precursors applied in the electroreduction strategy is reviewed, including aryl halides, aryl diazonium salts, arylazo sulfones, aryl amines, nitroarenes, aryl quaternary ammonium salts, aryl triflates, and aryl thianthrenium salts.
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电还原策略:生成芳基自由基的可持续工具
芳基自由基是合成化学中重要的多功能活性中间体,其化学转化过程被视为过渡金属催化芳基化反应的完美补充。芳基自由基的形成主要是通过还原体系实现的。电催化具有安全可控的电位范围,可以轻松达到超出化学还原剂和激发光催化剂范围的还原电位,为生产芳基自由基提供了一种具有合成吸引力且环保的替代方法。据报道,芳基自由基的电化学功能化取得了显著成就。本综述主要关注通过电还原策略生成芳基自由基,并系统阐述了基质的合成应用、范围和局限性。综述了应用于电还原策略的各种芳基自由基前体,包括芳基卤化物、芳基重氮盐、芳基偶氮砜、芳基胺、硝基烯烃、芳基季铵盐、芳基三氟酸盐和芳基噻吩盐。
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来源期刊
Organic Chemistry Frontiers
Organic Chemistry Frontiers CHEMISTRY, ORGANIC-
CiteScore
7.90
自引率
11.10%
发文量
686
审稿时长
1 months
期刊介绍: Organic Chemistry Frontiers is an esteemed journal that publishes high-quality research across the field of organic chemistry. It places a significant emphasis on studies that contribute substantially to the field by introducing new or significantly improved protocols and methodologies. The journal covers a wide array of topics which include, but are not limited to, organic synthesis, the development of synthetic methodologies, catalysis, natural products, functional organic materials, supramolecular and macromolecular chemistry, as well as physical and computational organic chemistry.
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