电化学
格式化
催化作用
还原(数学)
电催化剂
化学
无机化学
材料科学
电极
物理化学
有机化学
数学
几何学
作者
Tim Wissink,Floriane A. Rollier,Valery Muravev,Jason M. J. J. Heinrichs,Rim C. J. van de Poll,Jiadong Zhu,Dimitra Anastasiadou,Nikolay Kosinov,Marta C. Figueiredo,Emiel J. M. Hensen
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2024-10-25
卷期号:14 (22): 16589-16604
标识
DOI:10.1021/acscatal.4c02619
摘要
In2O3 is a promising electrocatalyst for CO2 electroreduction (CO2ER) to formate. In2O3 nanoparticles doped with Pd, Ni, Co, Zr, and Ce promoters using flame-spray pyrolysis were characterized and evaluated in a gas diffusion electrode for the CO2ER. Doping results in slight shifts of the In binding energy as probed by XPS, which correlates with a change of the Faradaic efficiency to formate (FEformate) in the order Ce-doped In2O3 > Zr-doped In2O3 > In2O3 > Pd-doped In2O3 > Ni-doped In2O3 > Co-doped In2O3. However, the differences in CO2ER performance are caused mainly by the different extent of In2O3 reduction. Co-doped In2O3 is prone to complete reduction to a stable Co–In alloy with a low FEformate due to a high hydrogen evolution activity. The stabilizing effect of Ce on In2O3 is further demonstrated by an X-ray absorption spectroscopy study of a set of Ce-doped In2O3 samples (10, 50, 90 at%), highlighting that reduction of In2O3 is suppressed with increasing Ce content. Optimum performance in terms of FEformate is obtained at a Ce content of 10 at%, which is attributed to the stabilization of In2O3 under negative bias up to −2 V. At higher Ce content, less active CeO2 is formed. The highest FEformate of 86% observed for In2O3 doped with 10 at% Ce, at a current density of 150 mA/cm2, compares favorably with a FEformate of 78% for In2O3.
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