石墨烯
拉曼光谱
催化作用
电子转移
电化学
材料科学
吸附
氧还原
氧还原反应
光化学
氮气
电催化剂
氧气
反应机理
无机化学
化学
纳米技术
析氧
化学工程
反应中间体
兴奋剂
纳米材料
基本反应
光谱学
燃料电池
氧化还原
作者
Navid Solati,Sarp Kaya
标识
DOI:10.1002/cctc.202501029
摘要
Abstract Nitrogen‐doped graphene (N‐doped graphene) is a promising material for electrochemical applications, particularly as a catalyst in the oxygen reduction reaction (ORR). Despite numerous studies, the detailed mechanism of ORR on N‐doped graphene remains unresolved. This study utilizes spectroelectrochemical Raman (SEC‐Raman) spectroscopy to investigate the elementary steps of the ORR on graphene doped with pyridinic and graphitic nitrogen configurations. A comprehensive Raman spectral analysis reveals the evolution of adsorbed species and active sites during the reaction, suggesting an unconventional pathway involving outer‐sphere electron transfer and unique adsorption dynamics. These insights clarify the interplay between nitrogen configurations and catalytic performance, offering a deeper understanding of the structure‐activity relationship in N‐doped graphene. The findings pave the way for improved design and optimization of metal‐free ORR electrocatalysts.
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