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Preparation of polymer gold nanoparticle composites with tunable plasmon coupling and their application as SERS substrates

机译:聚合物的制备金纳米颗粒用可调等离子体耦合和复合材料他们的应用程序作为ser基质

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摘要

The controlled surface functionalisation of polystyrene beads (200 nm) with a lipoic acid derivative is used to assemble composites with between 4 to 20% loadings of citrate stabilised gold nanoparticles (13 nm-30 nm), which exhibit variable optical properties arising from interactions of the nanoparticle surface plasmon resonance (SPR). The decrease in average interparticle distance at higher loadings results in a red-shift in the SPR wavelength, which is well described by a universal ruler equation. The composite particles are shown to act as good SERS substrates for the standard analyte 4-mercaptophenol. The direct assessment of the SERS activity for individual composite particles solution is achieved by Raman optical tweezer measurements on 5.3 mu m composite particles. These measurements show an increase in performance with increasing AuNP size. Importantly, the SERS activity of the individual particles compares well with the bulk measurements of samples deposited on a surface, indicating that the SERS activity arises primarily from the composite and not due to composite-composite interactions. In both studies the optimum SERS response is obtained with 30 nm AuNPs.
机译:控制表面functionalisation聚苯乙烯珠与硫辛酸(200海里)导数是用来组装复合材料柠檬酸在4 - 20%之间的载荷稳定下来金纳米粒子(13 nm-30海里),展览变量引起的光学特性纳米粒子表面等离子体的相互作用共振(SPR)。颗粒间的距离在高载荷的结果表面等离子体共振波长红移,这是描述一个通用方程。复合粒子作为好爵士所示基质对分析物的标准4-mercaptophenol。ser活动对个人复合粒子解决方案是通过拉曼光镊测量值在5.3μm复合粒子。这些测量显示的增加性能随着AuNP大小。重要的是,个人的ser活动与大部分粒子比较好测量样品表面沉积,表明ser活动出现主要从复合,而不是由于composite-composite交互。获得最优ser响应与30 nm

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