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- Title
Unveiling the Proton‐Feeding Effect in Sulfur‐Doped Fe−N−C Single‐Atom Catalyst for Enhanced CO<sub>2</sub> Electroreduction.
- Authors
Chen, Shanyong; Li, Xiaoqing; Kao, Cheng‐Wei; Luo, Tao; Chen, Kejun; Fu, Junwei; Ma, Chao; Li, Hongmei; Li, Ming; Chan, Ting‐Shan; Liu, Min
- Abstract
Heteroatom‐doping in metal‐nitrogen‐carbon single‐atom catalysts (SACs) is considered a powerful strategy to promote the electrocatalytic CO2 reduction reaction (CO2RR), but the origin of enhanced catalytic activity is still elusive. Here, we disclose that sulfur doping induces an obvious proton‐feeding effect for CO2RR. The model SAC catalyst with sulfur doping in the second‐shell of FeN4 (Fe1−NSC) was verified by X‐ray absorption spectroscopy and aberration‐corrected scanning transmission electron microscopy. Fe1−NSC exhibits superior CO2RR performance compared to sulfur‐free FeN4 and most reported Fe‐based SACs, with a maximum CO Faradaic efficiency of 98.6 % and turnover frequency of 1197 h−1. Kinetic analysis and in situ characterizations confirm that sulfur doping accelerates H2O activation and feeds sufficient protons for promoting CO2 conversion to *COOH, which is also corroborated by the theoretical results. This work deepens the understanding of the CO2RR mechanism based on SAC catalysts.
- Subjects
SCANNING transmission electron microscopy; LITHIUM sulfur batteries; CATALYSTS; CATALYTIC activity; ELECTROLYTIC reduction; X-ray absorption; METAL catalysts; X-ray spectroscopy
- Publication
Angewandte Chemie, 2022, Vol 134, Issue 32, p1
- ISSN
0044-8249
- Publication type
Article
- DOI
10.1002/ange.202206233