析氧
过电位
电催化剂
制氢
化学工程
纳米结构
电化学
材料科学
电解
分解水
电极
无机化学
氢
化学
纳米技术
催化作用
物理化学
生物化学
工程类
光催化
有机化学
电解质
作者
Bingjie Zhou,Yuankai Shao,Zhenguo Li,Weishen Yang,Xiaoning Ren,Yaodong Hao
标识
DOI:10.1016/j.ijhydene.2023.10.310
摘要
Synthesis of optimized active and stable electrocatalyst represents a significant and crucial obstacle in producing green hydrogen. Additionally, the oxygen evolution reaction (OER) poses a significant challenge in the sustainable production of hydrogen, mainly because of its sluggish nature. In this research, the electrodeposition technique was used for synthesizing the hierarchical Ni–Mn–P@Ni–Co nanostructure and its electrocatalytic behavior was explored for hydrogen evolution and urea electro-oxidation reactions (HER and UOR). Electrochemical analysis revealed that by utilizing a high surface area and favorable intrinsic activity, electrodes that demonstrated remarkable electrocatalytic activity and performance were created through the fabrication process. For delivering the 10 mA cm−2 current density, the Ni–Mn–P@Ni–Co electrode needed only 70 mV overpotential in HER and 1.309 V vs RHE in UOR. Furthermore, substituting the UOR with OER also resulted in an enhancement of hydrogen production efficiency. During overall urea electrolysis, the cell voltage in 10 mA cm−2 was only 1.395 V which, is 200 mV lower than the HER-OER process.
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