A highly selective and sensitive CdS fluorescent quantum dot for the simultaneous detection of multiple pesticides

IF 3.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Analyst Pub Date : 2022-06-01 DOI:10.1039/D2AN00575A
Siyu Chen, Shu-Na Yun, Yujiao Liu, Ruijin Yu, Qin Tu, Jinyi Wang and Mao-Sen Yuan
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引用次数: 5

Abstract

The abuse of pesticides has introduced a large number of residues in soil and drinking water, which can then enter the food chain and the human body. Monitoring pesticide residues and developing simple and fast detection systems for pesticide residues is urgently needed. In this study, we presented one-pot prepared CdS fluorescent quantum dots (QDs) and explored their sensing application for organic pesticides. The CdS QDs can sensitively and selectively detect three different pesticides, dichlorvos (DDVP), paraquat, and glufosinate-ammonium, through different fluorescence responses. Paraquat can effectively quench the fluorescence of the QDs and DDVP can cause remarkable fluorescent enhancement. Glufosinate-ammonium can induce both 150 nm fluorescent blueshifting and 30-fold fluorescent enhancement. The probe exhibited low detection limits for the three pesticides: 1.44 μM for paraquat, 0.23 mM for DDVP, and 49.8 μM for glufosinate-ammonium. Furthermore, based on the results, we utilized the powerful functions of smartphones to establish a concentration-gray value standard curve through RGB values and gray values to realize the qualitative detection and quantitative analysis of DDVP. It is believed that this work presents a new platform for the simultaneous detection of multiple pesticides using a single QDs probe. The present on-site method using a smartphone is of great potential for water monitoring in rural areas.

Abstract Image

一种可同时检测多种农药的高选择性、高灵敏度CdS荧光量子点
农药的滥用在土壤和饮用水中引入了大量的残留物,这些残留物可以进入食物链和人体。目前迫切需要对农药残留进行监测,开发简单、快速的农药残留检测系统。本研究采用单锅法制备了CdS荧光量子点(QDs),并对其在有机农药的传感应用进行了探索。CdS量子点可以通过不同的荧光响应,灵敏而选择性地检测敌敌畏、百草枯和草铵膦三种不同的农药。百草枯能有效猝灭量子点的荧光,敌敌畏能显著增强量子点的荧光。草铵膦能诱导150 nm荧光蓝移和30倍荧光增强。该探针对3种农药的检出限较低,分别为百草枯1.44 μM、敌敌畏0.23 mM和草铵铵49.8 μM。在此基础上,利用智能手机的强大功能,通过RGB值和灰度值建立浓度-灰度值标准曲线,实现DDVP的定性检测和定量分析。本研究为利用单个量子点探针同时检测多种农药提供了一个新的平台。目前使用智能手机的现场方法在农村地区的水监测中具有很大的潜力。
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来源期刊
Analyst
Analyst 化学-分析化学
CiteScore
7.80
自引率
4.80%
发文量
636
审稿时长
1.9 months
期刊介绍: "Analyst" journal is the home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences.
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