电催化剂
碳化钨
析氧
分解水
双功能
催化作用
钨
材料科学
氢
无机化学
可逆氢电极
化学工程
碳化物
电极
化学
电化学
物理化学
工作电极
冶金
有机化学
光催化
工程类
作者
Nana Han,Ke Yang,Zhiyi Lu,Yingjie Li,Wenwen Xu,Tengfei Gao,Zhao Cai,Ying Zhang,Víctor S. Batista,Wen Liu,Xiaoming Sun
标识
DOI:10.1038/s41467-018-03429-z
摘要
Tungsten carbide is one of the most promising electrocatalysts for the hydrogen evolution reaction, although it exhibits sluggish kinetics due to a strong tungsten-hydrogen bond. In addition, tungsten carbide's catalytic activity toward the oxygen evolution reaction has yet to be reported. Here, we introduce a superaerophobic nitrogen-doped tungsten carbide nanoarray electrode exhibiting high stability and activity toward hydrogen evolution reaction as well as driving oxygen evolution efficiently in acid. Nitrogen-doping and nanoarray structure accelerate hydrogen gas release from the electrode, realizing a current density of -200 mA cm-2 at the potential of -190 mV vs. reversible hydrogen electrode, which manifest one of the best non-noble metal catalysts for hydrogen evolution reaction. Under acidic conditions (0.5 M sulfuric acid), water splitting catalyzed by nitrogen-doped tungsten carbide nanoarray starts from about 1.4 V, and outperforms most other water splitting catalysts.
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