格式化
法拉第效率
化学
电解
电催化剂
阴极
无机化学
阳极
电化学
氧化还原
催化作用
化学工程
电极
电解质
有机化学
工程类
物理化学
作者
Jiachen Li,Yun Kuang,Yongtao Meng,Xin Tian,Wei-Hsuan Hung,Xiao Zhang,Aowen Li,Mingquan Xu,Wu Zhou,Ching‐Shun Ku,Ching‐Yu Chiang,Guanzhou Zhu,Jinyu Guo,Xiaoming Sun,Hongjie Dai
摘要
Electrocatalytic CO2 reduction (CO2RR) to valuable fuels is a promising approach to mitigate energy and environmental problems, but controlling the reaction pathways and products remains challenging. Here a novel Cu2O nanoparticle film was synthesized by square-wave (SW) electrochemical redox cycling of high-purity Cu foils. The cathode afforded up to 98% Faradaic efficiency for electroreduction of CO2 to nearly pure formate under ≥45 atm CO2 in bicarbonate catholytes. When this cathode was paired with a newly developed NiFe hydroxide carbonate anode in KOH/borate anolyte, the resulting two-electrode high-pressure electrolysis cell achieved high energy conversion efficiencies of up to 55.8% stably for long-term formate production. While the high-pressure conditions drastically increased the solubility of CO2 to enhance CO2 reduction and suppress hydrogen evolution, the (111)-oriented Cu2O film was found to be important to afford nearly 100% CO2 reduction to formate. The results have implications for CO2 reduction to a single liquid product with high energy conversion efficiency.
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