Recent Advances in Asymmetric Electrochemical Synthesis

Comprehensive Summary Asymmetric organic electrosynthesis has the core value of precisely combining the clean characteristics of electrochemistry with the high selectivity of organic synthesis. This technology utilizes electrons as ideal redox reagents, fundamentally avoiding the reliance on stoichiometric reductants or hazardous oxidants in traditional methods, and meeting the development requirements of sustainable chemistry. By precise regulation of potential and current, the reaction can selectively generate highly reactive intermediates (such as radicals and radical ions) under mild conditions, opening up a unique pathway for efficient asymmetric synthesis and demonstrating great potential in the synthesis of chiral drug molecules, natural products, and functional materials. Currently, asymmetric organic electrosynthesis based on transition‐metal catalysis, organocatalysis, and biocatalysis is flourishing, and a systematic research system has been established to achieve asymmetric coupling and functionalization reactions of various radicals. This review summarizes the research progress made in the field of asymmetric electrosynthesis since 2019, and the mechanistic considerations are comprehensively discussed, including asymmetric anodic oxidation, cathodic reduction, and paired electrolysis. Furthermore, we provide critical insights into future directions and potential challenges in this field, highlighting opportunities for further methodology development and applications for asymmetric electrosynthesis. With the continuous breakthroughs in basic research and technological innovation, asymmetric organic electrosynthesis is expected to become an indispensable core tool in chiral chemistry. Key Scientists KEY PLAYERS in the field of asymmetric electrochemical synthesis.

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Publication Details

Journal
Chinese Journal of Chemistry
Published
2026-09-21
DOI
https://doi.org/10.1002/cjoc.70759
Primary Topic
Radical Photochemical Reactions
Type
article
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article

Recent Advances in Asymmetric Electrochemical Synthesis

Qingquan Lu, Kang Liang, Yingqi Yang, Ping Hu et al.
Chinese Journal of Chemistry
Radical Photochemical Reactions
article

Recent Advances in Asymmetric Electrochemical Synthesis

Qingquan Lu, Kang Liang, Yingqi Yang, Ping Hu, Chang Guo, Xiuwen Zheng, Cheng Huang, Jin Song
article en

Abstract

Comprehensive Summary Asymmetric organic electrosynthesis has the core value of precisely combining the clean characteristics of electrochemistry with the high selectivity of organic synthesis. This technology utilizes electrons as ideal redox reagents, fundamentally avoiding the reliance on stoichiometric reductants or hazardous oxidants in traditional methods, and meeting the development requirements of sustainable chemistry. By precise regulation of potential and current, the reaction can selectively generate highly reactive intermediates (such as radicals and radical ions) under mild conditions, opening up a unique pathway for efficient asymmetric synthesis and demonstrating great potential in the synthesis of chiral drug molecules, natural products, and functional materials. Currently, asymmetric organic electrosynthesis based on transition‐metal catalysis, organocatalysis, and biocatalysis is flourishing, and a systematic research system has been established to achieve asymmetric coupling and functionalization reactions of various radicals. This review summarizes the research progress made in the field of asymmetric electrosynthesis since 2019, and the mechanistic considerations are comprehensively discussed, including asymmetric anodic oxidation, cathodic reduction, and paired electrolysis. Furthermore, we provide critical insights into future directions and potential challenges in this field, highlighting opportunities for further methodology development and applications for asymmetric electrosynthesis. With the continuous breakthroughs in basic research and technological innovation, asymmetric organic electrosynthesis is expected to become an indispensable core tool in chiral chemistry. Key Scientists KEY PLAYERS in the field of asymmetric electrochemical synthesis.

Chinese Journal of Chemistry
University of Science and Technology of China (CN), Anhui University (CN), Wuhan University (CN), Hefei National Center for Physical Sciences at Nanoscale (CN), City University of Hong Kong, Shenzhen Research Institute (CN), Suzhou Research Institute (CN)
Industry, innovation and infrastructure
Openalex Percentile: Top 21%
Radical Photochemical Reactions
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