法拉第效率
电极
材料科学
铜
产量(工程)
沉积(地质)
实现(概率)
纳米技术
化学工程
面(心理学)
光电子学
化学
电化学
复合材料
人格
冶金
工程类
古生物学
物理化学
沉积物
统计
生物
社会心理学
数学
心理学
五大性格特征
作者
Gong Zhang,Zhi‐Jian Zhao,Dongfang Cheng,Huimin Li,Jia Yu,Qingzhen Wang,Hui Gao,Jinyu Guo,Huaiyuan Wang,Geoffrey A. Ozin,Tuo Wang,Jinlong Gong
标识
DOI:10.1038/s41467-021-26053-w
摘要
Tuning the facet exposure of Cu could promote the multi-carbon (C2+) products formation in electrocatalytic CO2 reduction. Here we report the design and realization of a dynamic deposition-etch-bombardment method for Cu(100) facets control without using capping agents and polymer binders. The synthesized Cu(100)-rich films lead to a high Faradaic efficiency of 86.5% and a full-cell electricity conversion efficiency of 36.5% towards C2+ products in a flow cell. By further scaling up the electrode into a 25 cm2 membrane electrode assembly system, the overall current can ramp up to 12 A while achieving a single-pass yield of 13.2% for C2+ products. An insight into the influence of Cu facets exposure on intermediates is provided by in situ spectroscopic methods supported by theoretical calculations. The collected information will enable the precise design of CO2 reduction reactions to obtain desired products, a step towards future industrial CO2 refineries.
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