过电位
电解
电解水
软件部署
电极
工作(物理)
分解水
纳米技术
材料科学
储能
工艺工程
电化学
生化工程
环境科学
计算机科学
化学
机械工程
工程类
催化作用
热力学
电解质
物理
功率(物理)
物理化学
操作系统
生物化学
光催化
作者
Aleksandar R. Žeradjanin,Praveen Narangoda,Ioannis Spanos,Justus Masa,Robert Schlögl
标识
DOI:10.1016/j.coelec.2021.100797
摘要
Development of efficient electrocatalytic gas-evolving electrodes is one of the essential prerequisites for the deployment of hydrogen-based electrochemical energy conversion and storage. Gas bubbles generated by electrolysis at electrocatalytic interfaces manifest into undesirable increase in overpotential that simultaneously compromises stability of the electrocatalytic materials. A key research question is how to use theory and advanced experimental tools to holistically understand the mechanism of gas-evolution phenomena and finally arrive at principles of electrode design that will assure facile gas evolution. The analysis given in this work offers an optimistic framework how to significantly reduce overpotential and enhance electrode stability during water electrolysis.
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