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一种高选择性和高灵敏度的 CdS 荧光量子点,可用于同时检测多种农药。

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

机构信息

College of Chemistry & Pharmacy, Northwest A&F University, Yangling, Shaanxi 712100, P. R. China.

出版信息

Analyst. 2022 Jul 12;147(14):3258-3265. doi: 10.1039/d2an00575a.

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.

摘要

农药的滥用在土壤和饮用水中引入了大量残留,这些残留随后可能会进入食物链并进入人体。监测农药残留并开发用于农药残留的简单快速检测系统已迫在眉睫。在这项研究中,我们提出了一种一锅法制备的 CdS 荧光量子点(QDs),并探索了其对有机农药的传感应用。CdS QDs 通过不同的荧光响应,可以灵敏且选择性地检测三种不同的农药,即敌敌畏(DDVP)、百草枯和草铵膦。百草枯可以有效地猝灭 QDs 的荧光,而敌敌畏可以引起显著的荧光增强。草铵膦可以同时诱导 150nm 的荧光蓝移和 30 倍的荧光增强。该探针对三种农药的检测限低:百草枯为 1.44μM,敌敌畏为 0.23mM,草铵膦为 49.8μM。此外,基于这些结果,我们利用智能手机的强大功能,通过 RGB 值和灰度值建立了浓度-灰度值标准曲线,实现了敌敌畏的定性检测和定量分析。相信这项工作为使用单个 QDs 探针同时检测多种农药提供了一个新平台。使用智能手机的现场方法对于农村地区的水质监测具有很大的潜力。

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