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Review of Recent Progress of Plasmonic Materials and Nano-Structures for Surface-Enhanced Raman Scattering

机译:表面增强拉曼散射的等离子体材料和纳米结构的最新研究进展

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摘要

Surface-enhanced Raman scattering (SERS) has demonstrated single-molecule sensitivity and is becoming intensively investigated due to its significant potential in chemical and biomedical applications. SERS sensing is highly dependent on the substrate, where excitation of the localized surface plasmons (LSPs) enhances the Raman scattering signals of proximate analyte molecules. This paper reviews research progress of SERS substrates based on both plasmonic materials and nano-photonic structures. We first discuss basic plasmonic materials, such as metallic nanoparticles and nano-rods prepared by conventional bottom-up chemical synthesis processes. Then, we review rationally-designed plasmonic nano-structures created by top-down approaches or fine-controlled synthesis with high-density hot-spots to provide large SERS enhancement factors (EFs). Finally, we discuss the research progress of hybrid SERS substrates through the integration of plasmonic nano-structures with other nano-photonic devices, such as photonic crystals, bio-enabled nanomaterials, guided-wave systems, micro-fluidics and graphene.
机译:表面增强拉曼散射(SERS)已显示出单分子敏感性,并且由于其在化学和生物医学应用中的巨大潜力而​​正在深入研究。 SERS传感高度依赖于底物,其中局部表面等离激元(LSP)的激发增强了邻近分析物分子的拉曼散射信号。本文综述了基于等离子体材料和纳米光子结构的SERS衬底的研究进展。我们首先讨论基本的等离子体材料,例如通过常规的自下而上的化学合成方法制备的金属纳米颗粒和纳米棒。然后,我们回顾通过自上而下的方法或具有高密度热点的精细控制合成创建的合理设计的等离子体纳米结构,以提供较大的SERS增强因子(EFs)。最后,我们讨论了通过将等离激元纳米结构与其他纳米光子器件(例如光子晶体,生物纳米材料,导波系统,微流体和石墨烯)集成,来研究混合SERS衬底的研究进展。

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