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Effect of Foreign Molecules on the SERS of Probe Molecules Trapped in Gaps between Planar Ag and Nano-sized Ag Particles

机译:外来分子对平面Ag与纳米Ag颗粒间缝隙中探针分子SERS的影响

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摘要

A few years ago, the plasmon-induced electronic coupling (PIEC) model was proposed in the literature to explain small changes in the surface-enhanced Raman scattering (SERS) in nanogap systems. If this model is correct, it will be very helpful in both basic and application fields. In light of this, we carefully reexamined its appropriateness. Poly(4-vinylpyridine) (P4VP) used in the earlier work was, however, never a proper layer, since most adsorbates not only adsorbed onto Ag nanoparticles sitting on P4VP but also penetrated into the P4VP layer deposited initially onto a flat Ag substrate, ultimately ending up in the SERS hot sites. Using 1,4-phenylenediisocyanide and 4-nitrophenol as the affixing layer and the foreign adsorbate, respectively, we could clearly reveal that the PIEC model is not suited for explaining the Raman signal in a nanogap system. Most of the Raman signal must have arisen from molecules situated at the gap center.
机译:几年前,文献中提出了等离子体激元诱导的电子耦合(PIEC)模型,以解释纳米间隙系统中表面增强拉曼散射(SERS)的微小变化。如果该模型正确,那么它将在基础和应用领域中都非常有用。有鉴于此,我们仔细地重新考虑了其适用性。但是,较早的工作中使用的聚(4-乙烯基吡啶)(P4VP)从来都不是合适的层,因为大多数吸附物不仅吸附到位于P4VP上的Ag纳米颗粒上,而且渗透到最初沉积在平坦Ag基底上的P4VP层中,最终出现在SERS热门网站中。分别使用1,4-苯二异氰酸酯和4-硝基苯酚作为固定层和异物吸附,我们可以清楚地揭示出PIEC模型不适用于解释纳米间隙系统中的拉曼信号。大多数拉曼信号必定是由位于间隙中心的分子产生的。

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