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Recent advances in surface plasmon-driven catalytic reactions

机译:表面等离激元驱动的催化反应的最新进展

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摘要

Surface plasmons, the free electrons' collective oscillations, have been used in the signal detection and analysis of target molecules, where the local surface plasmon resonance (LSPR) can produce a huge EM field, thus enhancing the SERS signal. However, another novel application of surface plasmons has been discovered in the photocatalysis field. In this review we will mainly discuss the occurrence of the oxidation reaction of amino group molecules and the reduction reaction of nitro group molecules with the assistance of hot electrons from noble metal surface plasmon decay. Meanwhile, these catalytic reactions can be probed by SERS and TERS technology in different conditions. The results show that hot electrons play a significant role in the field of surface plasmon-driven catalytic reactions. Subsequently, we further discuss the priority selectivity of plasmon-driven surface catalytic redox reactions. We discover that the reduction reaction of the nitro group is prior to the oxidation reaction of the amino group in the atmosphere and in an aqueous environment. Finally, we believe that plasmon-driven catalytic reactions can be applied on a large scale in medicine and electronics in the future.
机译:表面等离子体激元是自由电子的集体振荡,已用于目标分子的信号检测和分析,其中局部表面等离子体激元共振(LSPR)可以产生巨大的EM场,从而增强SERS信号。然而,在光催化领域中发现了表面等离子体激元的另一种新颖应用。在这篇综述中,我们将主要讨论氨基分子氧化反应的发生和硝基分子在贵金属表面等离子体激元衰减产生的热电子的帮助下的还原反应。同时,这些催化反应可以通过SERS和TERS技术在不同条件下进行探索。结果表明,热电子在表面等离激元驱动的催化反应领域中起着重要作用。随后,我们进一步讨论了等离激元驱动的表面催化氧化还原反应的优先选择性。我们发现,在大气和水性环境中,硝基的还原反应先于氨基的氧化反应。最后,我们相信等离激元驱动的催化反应可以在未来的医学和电子领域大规模应用。

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