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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >In situ seed-growth synthesis of silver nanoplates on glass for the detection of food contaminants by surface enhanced Raman scattering
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In situ seed-growth synthesis of silver nanoplates on glass for the detection of food contaminants by surface enhanced Raman scattering

机译:原位种子 - 通过表面增强拉曼散射检测食品污染物的玻璃上银纳米液体的种子生长合成

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摘要

Seed-growth synthesis is a common strategy to prepare silver nanoplates, whose peculiar plasmonic features can be exploited for surface enhanced Raman scattering (SERS) applications. Here we describe the fabrication and characterization of SERS chips using a peculiar in situ seed growth method, yielding a dense layer of nano-objects directly on a glass slide. In this way, geometric features (i.e. shape and dimensions) of the nano-objects can be tuned by controlling the growth time, obtaining a high concentration of hot spots on the surface. In particular, the SERS response of four kinds of chips were investigated to define the best SERS configuration in terms of size of the silver nano-objects, excitation wavelength and homogeneity of the SERS response. Silver nano-plates with a seeded growth time of 60 min demonstrated remarkable results both in terms of plasmonic enhancement, with an enhancement factor (EF) of 2 x 10(5) using a 532 nm laser excitation, and good homogeneity of the SERS response with intra- and inter-maps RSD of 10% and 5%, respectively. In order to demonstrate application of these chips for real sample analysis, an analytical procedure for the detection of a model pesticide, i.e. thiram fungicide, was developed and applied to its detection on green apples peels. SERS measurements on 60 min seeded growth silver nano-plates chip coupled with a multivariate PLS approach demonstrated high accuracy and repeatability for thiram detection in food matrix within the European law limits.
机译:种子生长合成是制备银纳米层的常用策略,其特殊的等离子体特征可以利用表面增强的拉曼散射(SERS)应用。在这里,我们描述了使用诸如原位种子生长方法的阶段芯片的制造和表征,直接在玻璃载玻片上产生纳米物体的致密层。以这种方式,可以通过控制生长时间来调谐纳米物体的几何特征(即形状和尺寸),从而获得表面上的高浓度的热点。特别地,研究了四种芯片的SERS响应,以在银纳米物体的尺寸,激发波长和SERS反应的均匀性方面定义最佳SERS配置。具有60分钟的种子生长时间的银纳米板在等离子体增强方面表现出显着的结果,具有2×10(5)的增强因子(EF),使用532nm激光激发,良好的SERS反应的良好均匀性分别具有10%和5%的地图和地图RSD。为了证明这些芯片的应用进行真实样品分析,开发了一种用于检测模型农药的分析方法,即瑟姆杀菌剂,并应用于绿色苹果皮的检测。 60分钟的种子纳米平板芯片与多元化PLS方法耦合的60分钟的测量结果表明,在欧洲法律限制中,在食品基质中的喉部检测的高精度和可重复性。

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