电解
电化学
阴极
钙钛矿(结构)
氧化物
材料科学
化学工程
法拉第效率
原位
电极
聚合物电解质膜电解
无机化学
化学
冶金
电解质
物理化学
工程类
有机化学
作者
Yuxiang Shen,Tianfu Liu,Rongtan Li,Houfu Lv,Na Ta,Xiaomin Zhang,Yuefeng Song,Qingxue Liu,Weicheng Feng,Guoxiong Wang,Xinhe Bao
摘要
Solid oxide electrolysis cells provide a practical solution for the direct conversion of CO2 to other chemicals (i.e. CO), however, an in-depth mechanistic understanding of the dynamic reconstruction of active sites for perovskite cathodes during CO2 electrolysis remains a great challenge. Herein, we identify that iridium-doped Sr2Fe1.45Ir0.05Mo0.5O6-δ (SFIrM) perovskite displays a dynamic electrochemical reconstruction feature during CO2 electrolysis with abundant exsolution of highly dispersed IrFe alloy nanoparticles on the SFIrM surface. The in situ reconstructed IrFe@SFIrM interfaces deliver a current density of 1.46 A cm-2 while maintaining over 99% CO Faradaic efficiency, representing a 25.8% improvement compared with the Sr2Fe1.5Mo0.5O6-δ counterpart. In situ electrochemical spectroscopy measurements and density functional theory calculations suggest that the improved CO2 electrolysis activity originates from the facilitated formation of carbonate intermediates at the IrFe@SFIrM interfaces. Our work may open the possibility of using an in situ electrochemical poling method for CO2 electrolysis in practice.
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