化学
电催化剂
电解质
溶剂化
接口(物质)
领域(数学)
生化工程
纳米技术
离子
物理化学
电化学
材料科学
电极
吉布斯等温线
数学
有机化学
吸附
纯数学
工程类
作者
Zachary Levell,Jia‐Bo Le,Saerom Yu,Ruoyu Wang,Sudheesh Kumar Ethirajan,Rachita Rana,Ambarish Kulkarni,Joaquin Resasco,Deyu Lu,Jun Cheng,Yuanyue Liu
标识
DOI:10.1021/acs.chemrev.3c00735
摘要
Heterogeneous electrocatalysis lies at the center of various technologies that could help enable a sustainable future. However, its complexity makes it challenging to accurately and efficiently model at an atomic level. Here, we review emerging atomistic methods to simulate the electrocatalytic interface with special attention devoted to the components/effects that have been challenging to model, such as solvation, electrolyte ions, electrode potential, reaction kinetics, and pH. Additionally, we review relevant computational spectroscopy methods. Then, we showcase several examples of applying these methods to understand and design catalysts relevant to green hydrogen. We also offer experimental views on how to bridge the gap between theory and experiments. Finally, we provide some perspectives on opportunities to advance the field.
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