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Dynamic Imaging Analysis of SERS-Active Nanoparticle Clusters in Suspension

机译:悬浮液中SERS活性纳米粒子簇的动态成像分析

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摘要

A novel wide-field approach for the real-time Surface Enhanced Raman Scattering (SERS) imaging of multiple silver nanoparticle clusters suspended in solution is described. This method enables direct correlation of the SERS activity of a single nanoparticle aggregate and its size through measurement of the cluster diffusion coefficient and can also be performed in a high-throughput basis. As a first demonstration, we investigate the salt-induced aggregation of silver nanoparticles in the presence of a reporter tag molecule, which has a high affinity for the nanoparticle surface. In addition to tracking individual particles, direct comparison of Rayleigh and SERS videos of the same colloid solution enabled measurement of the fraction of individual clusters that are SERS active and the dependence of this value on the relative concentration of the tag molecule. Furthermore, given the ability to also rapidly profile any nonuniformity in particle size distributions, we expect this approach will not only provide a new tool for the fundamental understanding of SERS but also significantly contribute to the development of an array of emerging nanoparticle-enhanced biomolecule and imaging detection platforms.
机译:描述了一种新颖的广域方法,用于溶液中悬浮的多个银纳米粒子簇的实时表面增强拉曼散射(SERS)成像。通过测量团簇扩散系数,该方法能够使单个纳米颗粒聚集体的SERS活性与其大小直接相关,并且也可以在高通量的基础上进行。作为第一个演示,我们研究了在报告子标签分子存在下盐诱导的银纳米颗粒聚集,该分子对纳米颗粒表面具有高度亲和力。除了跟踪单个粒子外,直接比较同一胶体溶液的Rayleigh和SERS视频,还可以测量具有SERS活性的单个簇的比例以及该值对标签分子相对浓度的依赖性。此外,考虑到还能够快速分析粒径分布中任何不均匀性的能力,我们希望这种方法不仅将为SERS的基本理解提供一种新工具,而且还将为开发一系列新兴的纳米颗粒增强生物分子和成像检测平台。

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