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Published on: November 17, 2023
Design of fluorescent self-assembled multilayers and interfacial sensing for organophosphorus pesticides
Xiangying Sun1, Kaihao Xia, Bin Liu
1College of Material Science and Engineering, The Key Laboratory of Functional Materials for Fujian Higher Education, Huaqiao University, Quanzhou 362021, China. liumy@hqu.edu.cn
Abstract:
This paper details the fabrication of indole (ID) self-assembled multilayers (SAMs) and fluorescence interfacial sensing for organophosphorus (OP) pesticides. Quartz/APES/AuNP/L-Cys/ID film was constructed on L-cysteine modified Quartz/APES/AuNP surface via electrostatic attraction between ID and L-cysteine. Cyclic voltammetry indicates that ID is immobilized successfully on the gold surface. Fluorescence of the Quartz/APES/AuNP/L-Cys/ID film shows sensitive response toward OPs. The fluorescent sensing conditions of the SAMs are optimized that allow linear fluorescence response for methylparathion and monocrotophos over 5.97 x 10(-7) to 3.51 x 10(-6)gL(-1) and 3.98 x 10(-6) to 3.47 x 10(-5)gL(-1), with detection limit of 6.1 x 10(-8)gL(-1) and 3.28 x 10(-6)gL(-1), respectively. Compared to bulk phase detection, interfacial fluorescence sensing based on the SAMs technology shows higher sensitivity by at least 2 order of magnitude.

