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Indirect Electrosynthesis with Halogen Ions as Mediators. | LitMetric

Indirect Electrosynthesis with Halogen Ions as Mediators.

Chem Rec

Faculty of Environment and Life, Beijing University of Technology, Beijing, 100124, China.

Published: September 2021

AI Article Synopsis

  • Organic electrosynthesis is gaining traction as a sustainable method, utilizing electric current as redox agents instead of conventional techniques.
  • Indirect electrosynthesis, using mediators, improves efficiency and compatibility by making electron transfer more uniform, in contrast to the direct method.
  • This summary highlights recent findings on halogen-mediated indirect electrosynthesis, focusing on the capabilities of halogen species generated from halide salts and discussing their reaction characteristics and potential future applications.

Article Abstract

Organic electrosynthesis has gained increasing research interest as it harvests electric current as redox regents, thereby providing a sustainable alternative to conventional approaches. Compared with direct electrosynthesis, indirect electrosynthesis employs mediator(s) to lower the overpotentials for substrate activation, and enhance the reaction efficiency and functional group compatibility by shifting the heterogenous electron transfer process to be homogenous. As one of the most versatile and cost-efficient mediators, halogen mediators are always combined with an irreversible halogenation reaction. Thus, the electrochemical reaction between halogen mediators and substrates doesn't directly controlled by the two standard potentials difference. In this account, our recent developments in the area of halogen-mediated indirect electrosynthesis are summarized. The anodically generated halogen species from halogenide salts have the abilities to undergo electron-transfer (ET) or hydrogen-atom- transfer (HAT) processes. The reaction features, scopes, limitations, and mechanistic rationalisations are discussed in this account. We hope our studies will contribute to the future developments to broaden the scope of halogen-mediated electrosynthesis.

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Source
http://dx.doi.org/10.1002/tcr.202100036DOI Listing

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