Cobalt phosphide nanoarrays on a borate-modified nickel foam substrate as an efficient dual-electrocatalyst for overall water splitting

被引:0
|
作者
Zhou, Ruijuan [1 ]
Zhang, Jinghao [1 ]
Long, Junxi [1 ]
Li, Lingfeng [1 ]
Ye, Qinglan [1 ]
Xu, Xuetang [1 ]
Wang, Fan [1 ]
机构
[1] School of Chemistry & Chemical Engineering, Guangxi University, Guangxi Key Laboratory of Electrochemical Energy Materials, Nanning,530004, China
基金
中国国家自然科学基金;
关键词
Bioremediation - Electrocatalysts - Hydrogen evolution reaction - Metal foams - Nickel - Surface discharges;
D O I
10.1016/j.jcis.2024.12.046
中图分类号
学科分类号
摘要
Developing efficient non-noble metal dual-functional electrocatalysts for overall water splitting is essential for the production of green hydrogen. Given the significant advantages of self-supporting electrodes, regulating the growth of self-supporting nanoarrays on a conductive substrate is conducive to improving the electrocatalytic activity. In this work, aligned cobalt phosphide (CoP) nanowire arrays grown on borate-modified Ni foam substrate (CoP/R-NF) were utilized as a bifunctional electrocatalyst for both hydrogen evolution reactions (HER) and oxygen evolution reactions (OER) in alkaline solution. The borate interfacial layer regulated the growth behavior of CoP nanowires, promoting a tip-enhanced electric field effect, facilitating an enhanced bimetallic synergistic effect. The CoP/R-NF electrode showed substantial catalytic activity for HER (η10 = 35 mV, 70 mV dec-1) and OER (241 mV, 32 mV dec-1). Moreover, a low cell voltage of 1.50 V to drive 10 mA cm−2 current density for overall water-splitting was achieved in an alkaline water electrolyzer, with long-term durability of 200 h at 100 mA cm−2, indicating the potential application of CoP/R-NF as a bifunctional catalyst for clean and renewable energy utilization. Such a synthetic strategy could pave the way for the development of non-noble bifunctional electrocatalysts for comprehensive water splitting. © 2024 Elsevier Inc.
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页码:509 / 520
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