过电位
磷化物
材料科学
析氧
分解水
电催化剂
过渡金属
异质结
化学工程
硫化物
催化作用
无机化学
金属
化学
电极
冶金
电化学
光电子学
物理化学
工程类
光催化
生物化学
作者
Mingrui Li,Kaitian Zheng,Jiajun Zhang,Xiaomin Li,Chunjian Xu
标识
DOI:10.1016/j.apsusc.2021.150510
摘要
The design and construction of a transition metal-based electrocatalyst is essential for the application of hydrogen energy. Oxygen evolution reaction (OER), a semi-reaction of water splitting, is generally the rate-determining step because of its sluggish kinetics and high overpotential. In this study, a 2D/2D sheet-on-sheet heterostructure of transition metal sulfide and phosphide was successful synthesized via facile hydrothermal treatments followed by a controllable electrodeposition process. Owing to the sheet-on-sheet morphology formed in the electrodeposition process, a highly developed porous structure was formed, which was favorable for the electrode reaction. Additionally, the refined electronic structure resulting from the close interaction of the transition metal sulfide and phosphide was considered in the heterostructure design. At an optimal deposition time, the Cox[email protected] grown on nickel foam (NF) exhibited OER activity with low overpotentials of 271 and 289 mV to afford current densities of 50 and 100 mA cm−2, respectively. Benefitting from the highly stable porous structure, Cox[email protected]/NF showed a high catalytic stability during the 30-h harsh oxygen evolution process. This 2D/2D sheet-on-sheet transition metal sulfide/phosphide heterostructure provides a new route for the development of practical transition metal oxygen evolution catalysts.
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