过电位
塔菲尔方程
分解水
制氢
材料科学
异质结
纳米复合材料
电解水
电化学
化学工程
电解
氢
纳米技术
电极
催化作用
化学
光电子学
物理化学
光催化
有机化学
工程类
生物化学
电解质
作者
Asma A. Alothman,Jafar Hussain Shah,Khuolwod A. Aljadoa,Gürkan Soykan,Şenay Yalçın,Abdul Ghafoor Abid,Suleyman I. Allakhverdiev
标识
DOI:10.1016/j.ijhydene.2024.02.354
摘要
The green hydrogen production via water splitting is a highly promising method for eventual fossil fuel replacement, which causes many harmful products. Water electrolysis is one particularly dependable method of bridging primary renewable energy with stable hydrogen energy. In this study, the Fe2O3@CuO-400 is fabricated via simple hydrothermal process and is employed for green hydrogen production. The structure-engineered Fe2O3@CuO-400 exhibits enhanced activity, achieving a lower overpotential of 130 mV during 10 mA cm−2 and a smaller Tafel slope of 77 mV/dec for hydrogen evolution reaction. Conversely, the Fe2O3@CuO-400 nanocomposite exhibits 230 mV of overpotential & 54 mV/dec of Tafel slope for OER. The electronic interaction between Fe2O3 and CuO inside the heterojunction adjusted the electrical configuration between Cu and Fe improving the kinetics of the reaction, which enhanced the efficiency of hydrogen production. Hence, this study proposes a new avenue for producing heterostructure-based catalysts, which are beneficial for electrochemical applications in future.
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