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Nonuniform Distribution of Capping Ligands Promoting Aggregation of Silver Nanoparticles for Use as a Substrate for SERS

机译:封端配体的非均匀分布促进银纳米颗粒聚集,用作SERS的底物

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Citrate-reduced silver nanoparticles (Ag-NPs) are used extensively for surface-enhanced Raman scattering (SERS) studies, but are typically found to aggregate using an aggregation agent. This study is aimed at developing a simple, stable, and reproducible aggregated method for Ag-NPs without any aggregation agents in aqueous solutions. The aggregation is induced by the process of centrifugation, water washing and ultrasonication. A mechanism based on the nonuniform distribution of capping ligands is proposed to account for the aggregated structure formation. UV-Vis-NIR extinction spectra and TEM allowed us to identify the existence of Ag-NPs aggregation. Further, due to the polydisperse mixture of Ag-NPs (20~65 nm) used in the present work, Ag-NPs are aggregated closely, which contribute to the observation of low-concentration SERS from the residual citrate layer or even the single-molecule SERS of R6Gon aggregation. After the evaporation of droplet of Ag-NPs aggregation on the Si substrate, citrate or R6Gcould also be detected but with marked redor blue-shifts.
机译:柠檬酸盐还原的银纳米颗粒(Ag-NPs)被广泛用于表面增强拉曼散射(SERS)研究,但通常发现使用聚集剂聚集。这项研究旨在开发一种简单,稳定,可重现的Ag-NP聚集方法,无需在水溶液中使用任何聚集剂。聚集是通过离心,水洗和超声处理诱导的。提出了一种基于封端配体的不均匀分布的机制来解释聚集结构的形成。 UV-Vis-NIR消光光谱和TEM使我们能够确定Ag-NPs聚集的存在。此外,由于本工作中使用的Ag-NPs(20〜65 nm)的多分散混合物,Ag-NPs紧密聚集,这有助于从残留柠檬酸盐层甚至单分子柠檬酸盐中观察低浓度的SERS。 R6Gon聚集的分子SERS。在Ag-NPs的液滴聚集在Si衬底上蒸发之后,也可以检测到柠檬酸盐或R6G,但具有明显的红移或蓝移。

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