氮和氟掺杂碳纳米角作为高效的无金属氧还原催化剂:氮基团的作用

Surfaces Pub Date : 2023-07-08 DOI:10.3390/surfaces6030015
Elisa Tosin, T. Gatti, S. Agnoli, L. Calvillo, E. Menna
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引用次数: 0

摘要

寻找活性、稳定、低成本的氧还原反应催化剂对于燃料电池和金属-空气电池的广泛应用至关重要。无金属催化剂的发展,而不是铂基材料,可以大大降低成本,提高这些设备的效率。在这项工作中,碳纳米角(cnh)通过Tour反应协议与含n杂环共价功能化,并作为无金属ORR催化剂进行了测试。n官能团的插入有利于氧完全还原为羟基离子,而n官能团的缺失有利于过氧化氢的生成。为了确定cnh的ORR活性的n -物种,光电发射和电化学测量相结合。结果表明,质子化N是参与ORR过程的主要物种,促进氧的吸附,并随后还原为中性氢化N物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nitrogen- and Fluorine-Doped Carbon Nanohorns as Efficient Metal-Free Oxygen Reduction Catalyst: Role of the Nitrogen Groups
The search of active, stable and low costs catalysts for the oxygen reduction reaction (ORR) is crucial for the extensive use of fuel cells and metal–air batteries. The development of metal-free catalysts, instead of platinum-based materials, can dramatically reduce the cost and increase the efficiency of these devices. In this work, carbon nanohorns (CNHs) have been covalently functionalized with N-containing heterocycles by the Tour reaction protocol and tested as metal-free ORR catalysts. The insertion of N-functionalities favored the complete reduction of oxygen to hydroxyl ions, while their absence favored the production of hydrogen peroxide. With the aim of determining the N-species responsible for the ORR activity of CNHs, photoemission and electrochemical measurements were combined. Results suggest that protonated N is the main species involved in the ORR process, facilitating the adsorption of oxygen, with their consequent reduction to neutral hydrogenated N species.
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CiteScore
4.40
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