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A plasmon-driven selective surface catalytic reaction revealed by surface-enhanced Raman scattering in an electrochemical environment

机译:在电化学环境中通过表面增强拉曼散射揭示的等离子体驱动的选择性表面催化反应

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摘要

Plasmonic catalytic reactions of molecules with single amine or nitro groups have been investigated in recent years. However, plasmonic catalysis of molecules with multiple amine and/or nitro groups is still unknown. In this paper, plasmon-driven catalytic reactions of 4,4'-dinitroazobenzene (DNAB), 4,4'-diaminoazobenzene (DAAB) and 4-nitro-4'-aminoazobenzene (NAAB) are investigated using electrochemical surface-enhanced Raman scattering (SERS) spectroscopy. The results reveal that a plasmon-driven reduction reaction occurred for DNAB and NAAB in which the NO2 group was reduced to NH2, while the plasmon-driven oxidation reaction of NH2 did not occur. This result demonstrates that plasmon-driven reduction reactions are much easier than plasmon-driven oxidization reactions in electrochemical environments. The molecular resonance may also play an important role in plasmon-driven catalytic reactions. These findings provide us with a deeper understanding of plasmon-driven catalytic reactions.
机译:近年来已经研究了具有单个胺或硝基基团的分子的等离子体催化反应。然而,具有多个胺和/或硝基基团的分子的等离子体催化仍是未知的。本文利用电化学表面增强拉曼散射研究了4,4'-二硝基偶氮苯(DNAB),4,4'-二氨基偶氮苯(DAAB)和4-硝基-4'-氨基偶氮苯(NAAB)的等离激元驱动催化反应。 (SERS)光谱学。结果表明,DNAB和NAAB发生了等离激元驱动的还原反应,其中NO2基团还原为NH2,而未发生由等离激元驱动的NH2氧化反应。该结果表明,在电化学环境中,等离子体激元驱动的还原反应比等离子体激元驱动的氧化反应容易得多。分子共振在等离激元驱动的催化反应中也可能起重要作用。这些发现使我们对等离激元驱动的催化反应有了更深入的了解。

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