Free-Standing Multiscale Porous High Entropy NiFeCoZn Alloy as the Highly Active Bifunctional Electrocatalyst for Alkaline Water Splitting

被引:3
|
作者
Zhang, Qiuping [1 ]
Wang, Xu [1 ]
Jian, Tianzhen [1 ]
Ma, Wenqing [1 ]
Xu, Caixia [1 ]
Zhou, Qiuxia [2 ]
Liu, Hong [1 ,3 ]
机构
[1] Univ Jinan, Univ Shandong, Inst Adv Interdisciplinary Res iAIR, Collaborat Innovat Ctr Technol & Equipment Biol Di, Jinan 250022, Shandong, Peoples R China
[2] Southwest Med Univ, Sch Med Informat & Engn, Luzhou 646000, Sichuan, Peoples R China
[3] Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
High-entropy-alloys; Bifunctional electrocatalyst; Dealloying; Electrocatalysis; Oxygen evolution reaction; Hydrogen evolution reaction; EFFICIENT; HETEROSTRUCTURE; INTERFACE; NANOSHEETS; ARRAY;
D O I
10.1002/cjoc.202300718
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In the endeavor of searching for highly active and stable electrocatalysts toward overall water splitting, high-entropy-alloys have been the intense subjects owing to their advanced physicochemical property. The non-noble metal free-standing multiscale porous NiFeCoZn high-entropy-alloy is in situ constructed on the surface layer of NiZn intermetallic and Ni heterojunction over nickel foam (NiFeCoZn/NiZn-Ni/NF) by one scalable dealloying protocal to fulfill the outstanding bifunctional electrocatalytic performances toward overall water splitting. Because of the high-entropy effects and specific hierarchical porous architecture, the as-made NiFeCoZn/NiZn-Ni/ NF displays high intrinsic catalytic activities and durability toward both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) in alkaline media. In particular, the in-situ construction of bimodal porous NiFeCoZn high-entropy-alloy results in the small overpotentials (eta(1000) = 254/409 mV for HER and OER), low Tafel slopes, and exceptional long-term catalytic durability for 400 h. Expressively, the electrolyzer constructed with NiFeCoZn/NiZn-Ni/NF as both cathode and anode exhibits a low cell voltage of 1.72 V to deliver the current density of 500 mA center dot cm(-2) for overall water splitting. This work not only provides a facile and scalable protocol for the preparation of self-supporting high-entropy-alloy nanocatalysts but also enlightens the engineering of high performance bifunctional electrocatalysts toward water splitting.
引用
收藏
页码:1465 / 1473
页数:9
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