过电位
电解质
催化作用
氧化物
铑
交换电流密度
化学
氢
化学工程
吸附
电子转移
无机化学
密度泛函理论
材料科学
电化学
物理化学
电极
计算化学
塔菲尔方程
有机化学
工程类
作者
Xiaofeng Ke,Feng Zhou,Yihuang Chen,Mei Zhao,Yun Yang,Huile Jin,Youqing Dong,Chao Zou,Xi’an Chen,Lijie Zhang,Shun Wang
标识
DOI:10.1016/j.jcis.2023.07.060
摘要
Sluggish kinetics of hydrogen oxidation reaction (HOR) in alkaline solution has restricted the rapid development of hydrogen economy. Constructing catalyst with metal-oxide heterostructures can enhance HOR performance; however, little studies concentrate on charge transfer between them, and the corresponding effects on reactions remain unclear. Herein, we report charge-transfer-adjustable CeO2/Rh interfaces uniformly dispersed on multiwalled carbon nanotube (CNT), which exhibit excellent alkaline HOR performance. Results confirm that the charge transfer from Rh to CeO2 could be conveniently tuned via thermal treatment. Consequently, the adsorption free energies of H* in Rh sites and OH* adsorption strength in CeO2 could be adjusted, as corroborated by density functional theory study. The optimized CeO2/Rh interfaces exhibit an exchange current density and a mass-specific kinetic current of 0.53 mA cmPGM-2 and 830 A gPGM-1 at an overpotential of 50 mV, respectively, which surpasses most of the advanced noble-metal-based electrocatalysts. This work provides a new insight of harnessing charge transfer of heterostructure to enhance catalytic activities.
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