电化学发光
吸附
化学
纳米技术
材料科学
光化学
电极
物理化学
作者
Mengzhen Xi,Yu Wu,Jingshuai Li,Li Wang,Ying Qin,Canglong Wang,Liuyong Hu,Wenling Gu,Chengzhou Zhu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-07-15
标识
DOI:10.1021/acs.nanolett.4c01093
摘要
In conventional electrochemiluminescence (ECL) systems, the presence of the competitive cathodic hydrogen evolution reaction (HER) in aqueous electrolytes is typically considered to be a side reaction, leading to a reduced ECL efficiency and stability due to H2 generation and aggregation at the electrode surface. However, the significant role of adsorbed hydrogen (H*) as a key intermediate, formed during the Volmer reaction in the HER process, has been largely overlooked. In this study, employing the luminol-H2O2 system as a model, we for the first time demonstrate a novel H*-mediated coreactant activation mechanism, which remarkably enhances the ECL intensity. H* facilitates cleavage of the O–O bond in H2O2, selectively generating highly reactive hydroxyl radicals for efficient ECL reactions. Experimental investigations and theoretical calculations demonstrate that this H*-mediated mechanism achieves superior coreactant activation compared to the conventional direct electron transfer pathway, which unveils a new pathway for coreactant activation in the ECL systems.
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