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伏安分析法在电催化机理解析中的应用

孙小萱1,骆明川1,吴雨辰2   

  1. 1. 北京大学材料科学与工程学院 2. 吉林大学化学学院
  • 收稿日期:2026-06-08 修回日期:2026-07-24 网络首发:2026-08-06 发布日期:2026-08-06
  • 通讯作者: 骆明川 E-mail:m.luo@pku.edu.cn
  • 基金资助:
    中国博士后面上资助项目(批准号:2024M760076)和国家重点研发计划项目(批准号:2023YFB4006200)资助

Voltammetric Strategies for Elucidating Reaction Mechanisms in Electrocatalysis

SUN Xiaoxuan1, LUO mingchuan1*, WU Yuchen2   

  1. 1. School of Materials Science and Engineering, Peking University 2. College of Chemistry, Jilin University
  • Received:2026-06-08 Revised:2026-07-24 Online First:2026-08-06 Published:2026-08-06
  • Supported by:
    Supported by the General Program of the China Postdoctoral Science Foundation(No. 2024M760076) and the National Key Research and Development Program of China(No. 2023YFB4006200)

摘要: 多相电催化涉及质子–电子转移、吸附/脱附及物质传输的复杂耦合. 伏安法因其能够原位监测界面反应的电位–电流变化,为解析界面过程提供了参数可控的实验手段. 本文从热力学与动力学角度阐述了伏安法中电位与电流的物理本质,揭示了二者与反应自由能和速率常数的内在联系. 在此基础上,分析了伏安曲线的典型波形特征、峰位变化及伏安趋势所反映的反应动力学信息,将其从实验参数转化为机理判据. 结合电催化前沿案例,阐明其对反应物种识别及复杂机理的解析的作用,并对伏安法分析策略的挑战及未来发展方向进行了分析和展望.

关键词: 伏安曲线, 电化学, 界面反应, 电催化

Abstract: Heterogeneous electrocatalysis entails the intricate coupling of electron/proton transfer, adsorption/desorption processes, and mass transport. By enabling in situ monitoring of current–potential responses, voltammetry serves as a highly tunable and exceptionally powerful experimental platform to deconvolute complex interfacial reactions. This review elucidates the fundamental physical significance of the potential and current from both thermodynamic and kinetic perspectives, explicitly correlating them with reaction free energies and rate constants. Accordingly, we systematically analyze how peak shapes, peak positions, and voltammetric trends serve as direct reflections of underlying reaction kinetics and pathways, thereby translating macroscopic observables into mechanistic descriptors. Drawing upon state-of-the-art electrocatalytic case studies, we elucidate the utility of voltammetry in identifying active species and resolving complex catalytic networks. Finally, we provide a comprehensive outlook on the enduring challenges and future evolution of voltammetry.

Key words: Voltammograms, Electrochemistry, Interfacial reactions, Electrocatalysis

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