电解质
法拉第效率
选择性
电化学
化学
电解
硫酸
水溶液
本体电解
无机化学
电极
催化作用
有机化学
物理化学
作者
Zesong Ma,Zhilong Yang,Wenchuan Lai,Qiyou Wang,Yan Qiao,Haolan Tao,Cheng Lian,Min Liu,Chao Ma,Anlian Pan,Hongwen Huang
标识
DOI:10.1038/s41467-022-35415-x
摘要
Electrochemical CO2 reduction to multicarbon products faces challenges of unsatisfactory selectivity, productivity, and long-term stability. Herein, we demonstrate CO2 electroreduction in strongly acidic electrolyte (pH ≤ 1) on electrochemically reduced porous Cu nanosheets by combining the confinement effect and cation effect to synergistically modulate the local microenvironment. A Faradaic efficiency of 83.7 ± 1.4% and partial current density of 0.56 ± 0.02 A cm-2, single-pass carbon efficiency of 54.4%, and stable electrolysis of 30 h in a flow cell are demonstrated for multicarbon products in a strongly acidic aqueous electrolyte consisting of sulfuric acid and KCl with pH ≤ 1. Mechanistically, the accumulated species (e.g., K+ and OH-) on the Helmholtz plane account for the selectivity and activity toward multicarbon products by kinetically reducing the proton coverage and thermodynamically favoring the CO2 conversion. We find that the K+ cations facilitate C-C coupling through local interaction between K+ and the key intermediate *OCCO.
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