电子结构
催化作用
调制(音乐)
材料科学
纳米技术
分解水
合理设计
异质结
钌
电解水
制作
数码产品
电解
阳极
吸附
氢
电子效应
对偶(语法数字)
设计要素和原则
化学物理
工程物理
制氢
作者
Jixiang Jiao,Shichun Mu
摘要
Ruthenium (Ru)-based catalysts stand out as highly promising for commercial water electrolysis owing to their exceptional catalytic activity. However, strong proton adsorption and poor stability under anodic conditions severely hinder their development. Optimizing the electronic structure of Ru sites has proven to be an effective strategy for enhancing activity and stability. Herein, based on our previous research results, we first discuss the fundamental principles of single and dual electronic modulation for Ru sites. Subsequently, electronic structure modulation approaches including anion modulation, heteroelemental modulation, heterostructure modulation, support modulation, and other modulations are analyzed. In addition, synthetic strategies are summarized to accelerate the fabrication of highly efficient catalytic systems. Finally, the trend and prospects for the future development of Ru-based catalysts are proposed. We anticipate that this review will provide essential theoretical and experimental guidance for the rational design and construction of Ru-based catalysts, ultimately contributing to the development of sustainable and cost-efficient hydrogen production technologies.
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