尿素
材料科学
催化作用
电解
双功能
制氢
废水
化学工程
镍
分解水
异质结
电极
降级(电信)
无机化学
光催化
冶金
环境工程
化学
光电子学
环境科学
计算机科学
有机化学
物理化学
工程类
电信
电解质
作者
Xiaoyan Zhuo,Wenjie Jiang,Guangfu Qian,Jinli Chen,Tianqi Yu,Lin Luo,Lihai Lu,Yongli Chen,Shibin Yin
标识
DOI:10.1021/acsami.1c08148
摘要
Urea electrolysis is a cost-effective method for urea-rich wastewater degradation to achieve a pollution-free environment. In this work, the Ni3S2/Ni heterostructure nanobelt arrays supported on nickel foam (Ni3S2/Ni/NF) are synthesized for accelerating the urea oxidation reaction (UOR) and hydrogen evolution reaction (HER). It only needs ultralow potentials of 1.30 V and −54 mV to achieve the current density of ±10 mA cm–2 for UOR and HER, respectively. Meanwhile, the overall urea oxidation driven by Ni3S2/Ni/NF only needs 1.36 V to achieve 10 mA cm–2, and it can remain at 100 mA cm–2 for 60 h without obvious activity attenuation. The superior performance could be attributed to the heterostructure between Ni3S2 and Ni, which can promote electron transfer and form electron-poor Ni species to optimize urea decomposition and hydrogen production. Moreover, the nanobelt self-supported structure could expose abundant active sites. This work thus provides a feasible and cost-effective strategy for urea-rich wastewater degradation and hydrogen production.
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