Developing highly efficient electrocatalysts for electrochemical CO(2) reduction (ECR) to value-added products is important for CO(2) conversion and utilization technologies. In this work, a sulfur-doped Ni-N-C catalyst is fabricated through a facile ion-adsorption and pyrolysis treatment. The resulting Ni-NS-C catalyst exhibits higher activity in ECR to CO than S-free Ni-N-C, yielding a current density of 20.5â mAâcm(-2) under -0.80â V versus a reversible hydrogen electrode (vs. RHE) and a maximum CO faradaic efficiency of nearly 100â%. It also displays excellent stability with negligible activity decay after electrocatalysis for 19â h. A combination of experimental investigations and DFT calculations demonstrates that the high activity and selectivity of ECR to CO is due to a synergistic effect of the S and Ni-N(X) moieties. This work provides insights for the design and synthesis of nonmetal atom-decorated M-N-C-based ECR electrocatalysts.
Sulfur-Decorated Ni-N-C Catalyst for Electrocatalytic CO(2) Reduction with Near 100â% CO Selectivity.
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作者:Lu Song, Zhang Yang, Mady Mohamed F, Egwu Eleri Obinna, Mekonnen Tucho Wakshum, Mazur Michal, Li Ang, Lou Fengliu, Gu Minfen, Yu Zhixin
| 期刊: | ChemSusChem | 影响因子: | 6.600 |
| 时间: | 2022 | 起止号: | 2022 Oct 10; 15(19):e202200870 |
| doi: | 10.1002/cssc.202200870 | ||
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