A dual-mode nanoprobe for the determination of parathion methyl based on graphene quantum dots modified silver nanoparticles

被引:0
|
作者
Yuan Li
Shujun Chen
Daiqin Lin
Zongbao Chen
Ping Qiu
机构
[1] Nanchang University,Department of Chemistry
[2] Jiangxi Province Product Quality Supervision Testing Institute,School of Chemistry and Environmental Science
[3] Shangrao Normal University,Jiangxi Province Key Laboratory of Modern Analytical Science
[4] Nanchang University,undefined
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关键词
Dual-signal; GQDs/AgNPs; Fluorescence; UV–vis spectrophotometry; Pesticide;
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学科分类号
摘要
We developed a highly sensitive and selective method for double-signal analysis (fluorescence and ultraviolet–visible spectrophotometry) of organophosphorus pesticides (OPs), based on reversible quenching of graphene quantum dots (GQDs; fluorophores) with silver nanoparticles (AgNPs; absorbers). We used acetylcholinesterase to catalytically convert acetylthiocholine into thiocholine. In turn, by competitive binding to the AgNPs, the produced thiocholine displaces AgNPs from the GQDs and thus induces fluorescence recovery. However, OP analytes inhibit the activity of acetylcholinesterase and, in so doing, retain the silver–graphene nanoparticle complex and fluorescence quenching. The degree of quenching is proportional to the concentration of OPs; the detection limit is as low as 0.017 μg/L. The ultraviolet–visible absorption of GQDs/AgNPs at 390 nm decreases—because of AgNP aggregation that occurs after desorption from the GQDs—and the absorbance is linearly proportional to the OP concentration. Our system has good selectivity to substances that are commonly present in water and vegetables. We successfully applied our method to OP analysis in water, apple, and carrot samples.
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页码:5583 / 5591
页数:8
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