析氧
制氢
分解水
法拉第效率
电解水
阳极
电化学
碱性水电解
电解
生产(经济)
生化工程
聚合物电解质膜电解
电解质
氢
纳米技术
材料科学
化学
催化作用
电极
工程类
经济
宏观经济学
物理化学
光催化
有机化学
生物化学
作者
Xinyu Zhang,Shi Meng Hu,Hao Xu,Hua Gui Yang,Peng Fei Liu
出处
期刊:Chemcatchem
[Wiley]
日期:2024-04-04
卷期号:16 (16)
被引量:1
标识
DOI:10.1002/cctc.202400345
摘要
Abstract Electrocatalytic water splitting, powered by clean energy sources, represents a sustainable method for hydrogen (H 2 ) production. Although extensive research has concentrated on performance indicators like current density and faradaic efficiency, the widespread adoption of electrocatalytic water splitting encounters challenges primarily due to high cell voltages and electricity costs. These issues stem from the sluggish kinetics of the anodic oxygen evolution reaction (OER). Various efforts to replace sluggish OER with thermodynamically more favorable anodic reactions have been demonstrated as pathbreaking strategies for energy‐efficient H 2 evolution. In this concept, we aim to comprehensively explore alternative electrochemical oxidation reactions combined with H 2 evolution and propose insights for the future development of cost‐effective integrated electrolysis for H 2 production.
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