Electrochemical water splitting has been known as a promising and environmental approach to produce hydrogen by avoiding relying on fossil fuels. Unfortunately, the efficient and large-scale $H_2$ production is still hindered by the sluggish kinetics of the oxygen evolution reaction (OER) at the anode side of a water electrolyzer. Herein, we report a novel amorphous sulfide doped cobalt oxide (amorphous Co-S-O) nanosphere as an efficient electrocatalyst for OER. The Co-S-O electrode exhibits high HER activity and good stability.
Guoru LiFengxiang YinZhiping LeiXinran ZhaoXiaobo HeZhichun LiXiaoting Yu
Shichen XuCuncai LvT. HeZhipeng HuangChi Zhang
Theophile NiyitangaHaekyoung Kim
Cong LiChi Ho WongFrank Leung‐Yuk LamXijun Hu
Yuanyuan JiangKai DongYizhong LuJiawei LiuBo ChenZhongqian SongLi Niu