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基于 Ag@三维介孔硅光子微球阵列的同时、无标记、高通量的多种农药的 SERS 检测。

Simultaneous, Label-Free and High-throughput SERS Detection of Multiple Pesticides on Ag@Three-Dimensional Silica Photonic Microsphere Array.

机构信息

School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing210023, China.

Anhui Costar Biochemical Company Ltd., Dangtu243100, Anhui, China.

出版信息

J Agric Food Chem. 2023 Feb 15;71(6):3050-3059. doi: 10.1021/acs.jafc.2c07846. Epub 2023 Feb 3.

Abstract

Rapid identification and quantitative simultaneous analysis for multiple pesticide in real samples based on surface-enhanced Raman spectroscopy (SERS) is still a challenge because of sample complexity, reproducibility, and stability of SERS substrate. With use of colloidal silver nanoparticles loaded three-dimensional (3D) silica photonic microspheres (SPMs) array as the analytical platform, a SERS-based array assay for multiple pesticides was developed in this work. The silver nanoparticles were fixed into the gaps formed by the self-assembled nanospheres of the 3D SPMs to produce "hot spots", on which the Raman enhanced effect was up to 9.86 × 10 and the maximum electric field enhancement effect reached to 9.75 times, ensuring the target pesticides on the surface of the SERS-substrate integrated SPM can be detected sensitively. Using 2,4-dichlorophenoxyacetic acid (2,4-D), glyphosate, and imidacloprid as the testing pesticides, the label-free and high-throughput SERS assay for simultaneous detection of the pesticides was established, giving good linear detection ranges (0.1-204.8 μg/mL for 2,4-D, 0.3-247.9 μg/mL for glyphosate, and 0.2-204.8 μg/mL for imidacloprid) and low detection limits (3.03 ng/mL for 2,4-D, 3.14 ng/mL for glyphosate, and 8.82 ng/mL for imidacloprid). The spiked recovery rates in the real samples were measured in the range of 82-112%, which was consistent with that of the classical standard methods. The label-free 3D SERS array analytical platform provides a powerful tool for high-throughput and low-cost screening of multiple pesticide residues in real samples.

摘要

基于表面增强拉曼光谱(SERS)的快速识别和定量同时分析多种农药在实际样品中仍然是一个挑战,因为样品的复杂性、重现性和 SERS 基底的稳定性。本工作利用负载胶体银纳米粒子的三维(3D)硅质光子微球(SPM)阵列作为分析平台,开发了一种基于 SERS 的多农药阵列分析方法。银纳米粒子被固定在 3D SPM 自组装纳米球形成的间隙中,产生“热点”,在这些热点上,拉曼增强效果高达 9.86×10,最大电场增强效果达到 9.75 倍,确保了表面集成 SPM 的 SERS 基底上的目标农药可以被灵敏地检测到。以 2,4-二氯苯氧乙酸(2,4-D)、草甘膦和吡虫啉为测试农药,建立了无标记和高通量的 SERS 检测方法,用于同时检测农药,具有良好的线性检测范围(2,4-D 为 0.1-204.8 μg/mL,草甘膦为 0.3-247.9 μg/mL,吡虫啉为 0.2-204.8 μg/mL)和低检测限(2,4-D 为 3.03 ng/mL,草甘膦为 3.14 ng/mL,吡虫啉为 8.82 ng/mL)。在实际样品中,加标回收率在 82-112%范围内,与经典标准方法一致。无标记 3D SERS 阵列分析平台为高通量、低成本筛选实际样品中的多种农药残留提供了有力工具。

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