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Updated: Jul 30, 2026

A Filter-based Surface Enhanced Raman Spectroscopic Assay for Rapid Detection of Chemical Contaminants
Published on: February 19, 2016
A portable kit for high-throughput determination of methyl parathion on vegetable surface by integrating solid-phase
Xiao Meng1, Lingfei Liu2, Haitong Wang1
1Physical and Chemical Laboratory, Shandong First Medical University & Shandong Academy of Medical Sciences, Shandong Academy of Occupational Health and Occupational Medicine, Ji'nan, 250000, China.
Abstract:
A portable kit was developed for on-site high-throughput detection of methyl parathion (MPT) in vegetables by integrating solid-phase microextraction and SERS technology. This portable kit consists of a 96-well plate coated with a copper foil modified by silver nanocrystals, which was fabricated by a galvanic displacement method. The 96-well plate allows multiple samples to be pretreated simultaneously, with each well featuring small pits that isolate individual samples, effectively preventing cross-contamination. Furthermore, the SERS substrate allows the enrichment of MPT on its surface, enhancing detection sensitivity and specificity. The method detection limits calculated from the characteristic peak of MPT is 0.27 ng/cm2 (S/N = 3). MPT on spinach, green pepper, and tomato surfaces were directly determined rapidly and the sensitivities were 1.42 ng/cm2, 0.84 ng/cm2, and 0.87 ng/cm2, respectively. The versatility and reliability of this approach underscore its potential for routine pesticide residue screening. Looking ahead, further optimization of this platform could extend its applicability to a broader spectrum of organophosphorus pesticides, bolstering food safety monitoring and reducing potential health risks.
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