Electrocatalytic reduction of carbon monoxide into fuels or chemicals with two or more carbons is very attractive due to their high energy density and economic value. Herein we demonstrate the synthesis of a hydrophobic Cu/Cu(2)O sheet catalyst with hydrophobic n-butylamine layer and its application in CO electroreduction. The CO reduction on this catalyst produces two or more carbon products with a Faradaic efficiency of 93.5% and partial current density of 151âmAâcm(-2) at the potential of -0.70âV versus a reversible hydrogen electrode. A Faradaic efficiency of 68.8% and partial current density of 111âmAâcm(-2) for ethanol were reached, which is very high in comparison to all previous reports of CO(2)/CO electroreduction with a total current density higher than 10âmAâcm(-2). The as-prepared catalyst also showed impressive stability that the activity and selectivity for two or more carbon products could remain even after 100 operating hours. This work opens a way for efficient electrocatalytic conversion of CO(2)/CO to liquid fuels.
A hydrophobic Cu/Cu(2)O sheet catalyst for selective electroreduction of CO to ethanol.
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作者:Ma Guifeng, Syzgantseva Olga A, Huang Yan, Stoian Dragos, Zhang Jie, Yang Shuliang, Luo Wen, Jiang Mengying, Li Shumu, Chen Chunjun, Syzgantseva Maria A, Yan Sen, Chen Ningyu, Peng Li, Li Jun, Han Buxing
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2023 | 起止号: | 2023 Jan 31; 14(1):501 |
| doi: | 10.1038/s41467-023-36261-1 | ||
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