Isotope-dependent Tafel analysis probes proton transfer kinetics during electrocatalytic water splitting
Jinzhen Huang, Ran Wang, Hongyuan Sheng, Xiaorong Zhu, R. Dominic Ross, Daxing Hua, Lei Lin, Yafei Li 等 17 位
University of Wisconsin–Madison Harbin Institute of Technology Paul Scherrer Institute Fudan University
阅读操作
确认中在文库中上传 PDF 后可生成中文音频讲解。
摘要与影响
Proton transfer plays an important role in both hydrogen and oxygen evolution reactions during electrocatalytic water splitting to produce green hydrogen. However, directly adapting the conventional proton/deuterium kinetic isotope effect to study proton transfer in heterogeneous electrocatalytic processes is challenging. Here we propose using the shift in the Tafel slope between protic and deuteric electrolytes, or the Tafel slope isotope effect, as an effective probe of proton transfer characteristics. Comparison of the Tafel slope isotope effect for diverse hydrogen and oxygen evolution reaction electrocatalysts in different pH environments reveals that proton transfer is both pH and structure dependent. Using ruthenium oxide as an example, we show that local structure modification can change the rate-determining step from an electrochemical, concerted proton–electron transfer step to a chemical step and improve the oxygen evolution activity in acid. The isotope-dependent Tafel analysis will facilitate a better understanding of the proton transfer behaviours during electrocatalytic processes and provide guidance for designing efficient electrocatalysts. Proton transfer plays a key role in fuel-producing reactions, but directly monitoring these processes in heterogeneous electrocatalysts is challenging. Now it has been shown that shifts in the Tafel slope in protic versus deuteric electrolytes can elucidate the rate-determining step during water splitting and reveal pH- and structure-dependent proton transfer behaviours.
逐年被引趋势
关键指标
同类平均 = 1
同领域 · 同年份 · 同类型
Google Scholar 与 OpenAlex 的被引统计范围不同,数值存在差异属正常。
AI 辅助阅读
依据:摘要
可就本文提问;依据不足时会说明。
学术脉络
学科主题
工程Electrocatalysts for Energy Conversion
Electrochemical Analysis and Applications · Advanced battery technologies research
参考文献 62
此处列出前 3 条
引用本文 55
按被引量排序,此处列出前 3 条