双功能
材料科学
分解水
析氧
氢氧化物
电解质
催化作用
纳米线
纳米技术
贵金属
电催化剂
化学工程
无机化学
层状双氢氧化物
电极
电化学
金属
冶金
化学
有机化学
工程类
光催化
物理化学
作者
Zhiqiang Wang,Sha Zeng,Weihong Liu,Xing‐Wang Wang,Qingwen Li,Zhigang Zhao,Fengxia Geng
标识
DOI:10.1021/acsami.6b13075
摘要
Developing efficient but nonprecious bifunctional electrocatalysts for overall water splitting in basic media has been the subject of intensive research focus with the increasing demand for clean and regenerated energy. Herein, we report on the synthesis of a novel hierarchical hybrid electrode, NiFe-layered double hydroxide molecularly ultrathin sheets grown on NiCo2O4 nanowire arrays assembled from thin platelets with nickel foam as the scaffold support, in which the catalytic metal sites are more accessible and active and most importantly strong chemical coupling exists at the interface, enabling superior catalytic power toward both oxygen evolution reaction (OER) and additionally hydrogen evolution reaction (HER) in the same alkaline KOH electrolyte. The behavior ranks top-class compared with documented non-noble HER and OER electrocatalysts and even comparable to state-of-the-art noble-metal electrocatalysts, Pt and RuO2. When fabricated as an integrated alkaline water electrolyzer, the designed electrode can deliver a current density of 10 mA cm-2 at a fairly low cell voltage of 1.60 V, promising the material as efficient bifunctional catalysts toward whole cell water splitting.
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