Jun ChiHongmei YuBowen QinLi FuJia JiaBaolian YiZhigang Shao
Employing a low-cost and highly efficient electrocatalyst to replace Ir-based catalysts for oxygen evolution reaction (OER) has drawn increasing interest in renewable energy storage. In this work, a vertically aligned FeOOH/NiFe layered double hydroxides (LDHs) nanosheets supported on Ni foam (VA FeOOH/NiFe LDHs-NF) is prepared as a highly effective OER electrode in alkaline electrolyte. The VA FeOOH/NiFe LDHs-NF represents nanosheet arrays on nickel foam with some interspace among them. The vertically aligned and interlayer-structured architecture is binder-free and contributes to facile strain relaxation, relieving the exfoliation of the catalysts layer caused by the oxygen evolution process. The as-prepared electrode shows current densities of 10 and 500 mA cm-2 at overpotentials of 208 and 288 mV, and good stability in a half-cell electrolyzer. Besides, the alkaline polymer electrolyte water electrolyzer (APEWE) with this electrode showed 1.71 V at 200 mA cm-2, and 2.041 V at 500 mA cm-2, exhibiting the corresponding energy efficiency of 86.0% and 72.0% (based on the lower heating value of hydrogen), which is better than the typical commercial alkaline water electrolyzer.
Jun Chi (3598715)Hongmei Yu (584700)Bowen Qin (3598712)Li Fu (85791)Jia Jia (448088)Baolian Yi (1834840)Zhigang Shao (1834843)
Yu DuDepei LiuShicheng YanTao YuZhigang Zou
Jiang LiuJia ZhouShuang LiuGui ChenWei WuYing LiPujun JinChunli Xu
Ruxin LiuShu-Ming ZhangXudong NiuXuefei LeiXuanwen LiuRui Guo
Jun ChiHongmei YuGuang JiangJia JiaBowen QinBaolian YiZhigang Shao