催化作用
可再生能源
纳米技术
制氢
电解水
氢
电解
化石燃料
电力转天然气
原子经济
电化学
材料科学
分解水
化学
生化工程
有机化学
生态学
工程类
物理化学
生物
电解质
光催化
电极
作者
Zonghua Pu,Ibrahim Saana Amiinu,Ruilin Cheng,Pengyan Wang,Chengtian Zhang,Shichun Mu,Weiyue Zhao,Fengmei Su,Gaixia Zhang,Shijun Liao,Shuhui Sun
出处
期刊:Nano-micro Letters
[Springer Science+Business Media]
日期:2020-01-13
卷期号:12 (1)
被引量:243
标识
DOI:10.1007/s40820-019-0349-y
摘要
Hydrogen, a renewable and outstanding energy carrier with zero carbon dioxide emission, is regarded as the best alternative to fossil fuels. The most preferred route to large-scale production of hydrogen is by water electrolysis from the intermittent sources (e.g., wind, solar, hydro, and tidal energy). However, the efficiency of water electrolysis is very much dependent on the activity of electrocatalysts. Thus, designing high-effective, stable, and cheap materials for hydrogen evolution reaction (HER) could have a substantial impact on renewable energy technologies. Recently, single-atom catalysts (SACs) have emerged as a new frontier in catalysis science, because SACs have maximum atom-utilization efficiency and excellent catalytic reaction activity. Various synthesis methods and analytical techniques have been adopted to prepare and characterize these SACs. In this review, we discuss recent progress on SACs synthesis, characterization methods, and their catalytic applications. Particularly, we highlight their unique electrochemical characteristics toward HER. Finally, the current key challenges in SACs for HER are pointed out and some potential directions are proposed as well.
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