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Engineering of SERS Substrates Based on Noble Metal Nanomaterials for Chemical and Biomedical Applications

机译:化学和生物医学应用基于贵金属纳米材料的SERS基底工程

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摘要

Surface-enhanced Raman scattering (SERS) has attracted great interest due to its remarkable enhancement, excellent sensitivity, and the "fingerprinting" ability to produce distinct spectra for detecting various molecules. Noble metal nanomaterials have usually been employed as SERS-active substrates because of their strong SERS enhancement originated from their unique surface plasmon resonance (SPR) properties. Because the SPR property depends on metal material's size, shape, morphology, arrangement, and dielectric environment around metal nanostructures, the key to wider applications of SERS technique is to develop plasmon-resonant structures with novel geometries to enhance Raman signals and to control the periodic ordering of these structures over a large area to obtain reproducible Raman enhancement. This review presents a general view on the theory background of SERS effect and several basic concepts and focuses on recent progress in engineering metallic nanostructures with various morphologies using versatile methods for improving SERS properties. Their potential applications in the field of chemical detection and biological sensing are overviewed.
机译:表面增强拉曼散射(SERS)由于其显着的增强,出色的灵敏度以及产生用于检测各种分子的独特光谱的“指纹”能力而引起了人们的极大兴趣。贵金属纳米材料由于其独特的表面等离子体共振(SPR)特性而引起的SERS增强,通常被用作SERS活性基质。由于SPR属性取决于金属材料的大小,形状,形态,排列以及金属纳米结构周围的介电环境,因此SERS技术广泛应用的关键是开发具有新颖几何形状的等离子体激元共振结构,以增强拉曼信号并控制周期性这些结构在大面积上的有序排列以获得可再现的拉曼增强。这篇综述提出了对SERS效应的理论背景和几个基本概念的一般看法,并着重介绍了使用通用方法改善SERS性能的各种形态工程金属纳米结构的最新进展。概述了它们在化学检测和生物传感领域的潜在应用。

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