化学
苯甲醛
氨
光化学
联氨(抗抑郁剂)
电化学
电催化剂
荧光
反应机理
聚集诱导发射
组合化学
催化作用
电极
有机化学
物理化学
物理
色谱法
量子力学
作者
Kumar Siddharth,Parvej Alam,Md Delowar Hossain,Ni Xie,Gabriel Sikukuu Nambafu,Faisal Rehman,Jacky W. Y. Lam,Guohua Chen,Jinping Cheng,Zhengtang Luo,Guanghao Chen,Ben Zhong Tang,Minhua Shao
摘要
Ammonia electro-oxidation is an extremely significant reaction with regards to the nitrogen cycle, hydrogen economy, and wastewater remediation. The design of efficient electrocatalysts for use in the ammonia electro-oxidation reaction (AOR) requires comprehensive understanding of the mechanism and intermediates involved. In this study, aggregation-induced emission (AIE), a robust fluorescence sensing platform, is employed for the sensitive and qualitative detection of hydrazine (N2H4), one of the important intermediates during the AOR. Here, we successfully identified N2H4 as a main intermediate during the AOR on the model Pt/C electrocatalyst using 4-(1,2,2-triphenylvinyl)benzaldehyde (TPE-CHO), an aggregation-induced emission luminogen (AIEgen). We propose the AOR mechanism for Pt with N2H4 being formed during the dimerization process (NH2 coupling) within the framework of the Gerischer and Mauerer mechanism. The unique chemodosimeter approach demonstrated in this study opens a novel pathway for understanding electrochemical reactions in depth.
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