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单金微壳,精心设计用于灵敏的表面增强拉曼散射探针。

Single gold microshell tailored to sensitive surface enhanced Raman scattering probe.

机构信息

Department of Chemistry, Seoul National University, Seoul 151-747, Korea.

出版信息

Anal Chem. 2010 Jan 1;82(1):447-51. doi: 10.1021/ac901904v.

Abstract

We finely tuned the Au shell on a polystyrene microsphere of 2 microm in diameter to achieve a strong surface enhanced raman scattering (SERS)-active platform so that the molecules on a single microspherical shell surface produce their own fingerprint SERS spectra. The proposed microshells can be easily and individually manipulated under a conventional optical microscope using a micropipet and act as a sensitive probe to obtain the SERS spectra of the monolayer of molecules on Pt as well as Au surfaces without any requirement of special surface morphology or modification for inducing SERS activity. Well-defined SERS spectra can be obtained at a very short acquisition time of milliseconds, suggesting useful applications of the present system based on the decoding of the SERS-active barcodes on individually functionalized microshells.

摘要

我们对直径为 2 微米的聚苯乙烯微球上的 Au 壳进行了精细调谐,以实现强表面增强拉曼散射 (SERS) 活性平台,从而使单个微球壳表面上的分子产生自己的指纹 SERS 光谱。所提出的微壳可以使用微吸管在传统光学显微镜下轻松且单独操纵,并作为灵敏的探针,以获得 Pt 以及 Au 表面上单层分子的 SERS 光谱,而无需任何特殊表面形貌或修饰来诱导 SERS 活性。在非常短的毫秒采集时间内即可获得良好定义的 SERS 光谱,表明基于单独功能化微壳上的 SERS 活性条码的解码,本系统具有有用的应用。

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