Tuning the structure and properties of carbon cloth by FeCl<sub>3</sub> intercalation for efficient two-electron oxygen reduction catalysis
Yu Gao, Guangyuan Liang, Huanhuan Liang, Lijing Wang, Hongfang Du, Dezheng Liu, Liangxu Lin
Rex Medical (United States) Hubei University of Arts and Science Fujian Normal University
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摘要与影响
The advancement of various energy conversion and storage technologies hinges on the development of efficient and stable electrocatalysts for the oxygen reduction reaction (ORR). In this study, we report the enhancement of carbon cloth (CC) for robust ORR through an FeCl 3 intercalation reaction. Utilizing a thermal annealing method, FeCl 3 was intercalated into the graphite structure on the surface of CC, resulting in the creation of numerous defects and the incorporation of Fe species. These newly introduced defects play a pivotal role in activating the ORR via a two-electron pathway. The presence of Fe species further stabilizes the catalytic activity, leading to efficient and stable ORR performance. Our findings highlight the significance of defect engineering and Fe species incorporation in carbon-based materials for improved ORR catalysis and pave the way for the development of advanced electrocatalysts for energy-related applications.
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工程Electrocatalysts for Energy Conversion
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