分解水
电催化剂
材料科学
纳米技术
化学工程
化学
催化作用
电化学
电极
工程类
光催化
物理化学
生物化学
作者
Ke Zhang,Kang Wang,Shimin Chai,Luyao Wang,Hongying Luo,Yanyan Liu,Yongfeng Wang,Jianchun Jiang,Baojun Li
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2025-03-17
卷期号:18 (11): 94907369-94907369
被引量:3
标识
DOI:10.26599/nr.2025.94907369
摘要
Electrolysis of water splitting is a clean and sustainable method for hydrogen production without the consumption of fossil fuels or the emission of carbon dioxide. Although a series of non-precious metal catalysts have been developed, they still cannot match the performance of precious metal catalysts in water electrolysis. Ruthenium (Ru), as a noble metal with an ideal cost-to-performance ratio and stable activity, is widely utilized by researchers. However, Ru-sites of electrocatalysts still face several challenges, such as size optimization, structural instability, and electronic structure regulation. This article reviews the design strategies on engineering Ru-based electrocatalysts for efficient water electrolysis, such as atomic-level dispersion, alloying, framework effect, doping, defect engineering, and interface design. And the application progress of precious metal catalysts in the seawater electrolysis was further reviewed and analyzed. These design strategies and their unique advantages provide a valuable theoretical foundation for the future application of Ru-based catalysts in hydrogen production via water electrolysis.
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