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A Hierarchical Nanostructure-Based Surface-Enhanced Raman Scattering Sensor for Preconcentration and Detection of Antibiotic Pollutants

机译:基于分层纳米结构的表面增强拉曼散射传感器,用于抗生素浓度的预浓缩和检测

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摘要

A surface-enhanced Raman scattering (SERS) sensor that integrates a plasmonic nanostructure with an electrostatic preconcentration unit has been developed. The silver nanoparticles (Ag-NPs) grafted Ge nanowires (Ge-NWs) are grown onto the surface of a commercial copper grid (Cu-grid), which is usually used for transmission electron microscopy sample support. This leads to the formation of a hierarchical Ag-NPs@Ge-NWs@Cu-grid substrate, which plays dual roles, i.e., preconcentration of analytes and amplification of SERS signal. This SERS detection platform based on the Ag-NPs@Ge-NWs@Cu-grid substrate is able to selectively detect polar analytes such as antibiotic pollutants. This SERS sensor has achieved a limit of detection of 2.4 × 10−9m for 6-aminopenicillanic acid and 0.9 × 10−9m for penicillin G, respectively. This work has demonstrated a promising SERS detection platform for monitoring polar SERS-active pollutants in the aquatic environment.
机译:已经开发了将等离子体纳米结构与静电预浓缩单元集成在一起的表面增强拉曼散射(SERS)传感器。将银纳米颗粒(Ag-NPs)接枝的Ge纳米线(Ge-NWs)生长在商用铜栅格(Cu-grid)的表面上,该铜栅格通常用于透射电子显微镜样品支架。这导致形成分级的Ag-NPs @ Ge-NWs @ Cu-网格衬底,其起双重作用,即,分析物的预浓缩和SERS信号的放大。这种基于Ag-NPs @ Ge-NWs @ Cu-grid基质的SERS检测平台能够选择性地检测极性分析物,例如抗生素污染物。该SERS传感器对6-氨基青霉烯酸的检出限分别为2.4×10-9m,对青霉素G的检出限分别为0.9×10-9m。这项工作证明了一个有前途的SERS检测平台,可用于监测水生环境中极性SERS活性污染物。

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