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基于石墨烯量子点的双模板印迹聚合物电化学传感器同时测定马拉硫磷和多菌灵

Dual-template imprinted polymer electrochemical sensor for simultaneous determination of malathion and carbendazim using graphene quantum dots.

作者信息

Beigmoradi Fariba, Rohani Moghadam Masoud, Garkani-Nejad Zahra, Bazmandegan-Shamili Alireza, Masoodi Hamid Reza

机构信息

Department of Chemistry, Faculty of Sciences, Vali-e-Asr University of Rafsanjan, Rafsanjan, Iran.

Department of Chemistry, Faculty of Sciences, Shahid Bahonar University of Kerman, Kerman, Iran.

出版信息

Anal Methods. 2023 Oct 5;15(38):5027-5037. doi: 10.1039/d3ay01054f.

Abstract

Malathion (MAL) and carbendazim (CBZ) are organophosphate pesticides and fungicides, respectively. They are often used simultaneously in agriculture, and both have been shown to have harmful effects on humans and animals. Therefore, it is important to be able to measure both of these toxins simultaneously in order to assess their potential risks. This study aims to design a dual template electrochemical sensor using a cost-effective graphite-epoxy composite electrode (GECE) modified with molecularly imprinted polymers (MIPs) coated on graphene quantum dots (GQDs) for simultaneous detection of MAL and CBZ in real samples. GQDs were synthesized initially, and their surface was coated with MIPs that were formed using MAL and CBZ as the template molecules, ethylene glycol dimethyl acrylate as the cross-linker, and methacrylic acid as the functional monomer. The GQDs@MIP were characterized using Fourier transform infrared spectroscopy, field-emission scanning electron microscopy, and X-ray scattering spectroscopy. Parameters affecting the sensor response, such as the percentage of GQDs@MIP in the fabricated electrode, the pH of the rebinding solution and analysis solution, and the incubation time, were optimized. The optimum pH values of the rebinding solution were verified using density functional theory (DFT) calculations. Under the optimized conditions, differential pulse voltammetry (DPV) response calibration curves of MAL and CBZ were generated, and the results showed that the sensor had a linear response to MAL in the range of 0.02-55.00 μM with a limit of detection (LOD) of 2 nM (S/N = 3) and to CBZ in the range of 0.02-45.00 μM with a low LOD of 1 nM (S/N = 3). The results also demonstrated the proposed sensor's long-term stability and anti-interference capability. The practical applicability of the fabricated electrode was evaluated for real sample analysis, and good recovery values were obtained.

摘要

马拉硫磷(MAL)和多菌灵(CBZ)分别是有机磷农药和杀菌剂。它们在农业中常被同时使用,并且都已被证明对人类和动物有有害影响。因此,能够同时检测这两种毒素以评估其潜在风险非常重要。本研究旨在设计一种双模板电化学传感器,该传感器使用涂覆在石墨烯量子点(GQDs)上的分子印迹聚合物(MIPs)修饰的具有成本效益的石墨 - 环氧复合电极(GECE),用于同时检测实际样品中的MAL和CBZ。首先合成了GQDs,其表面涂覆有以MAL和CBZ作为模板分子、乙二醇二甲基丙烯酸酯作为交联剂以及甲基丙烯酸作为功能单体形成的MIPs。使用傅里叶变换红外光谱、场发射扫描电子显微镜和X射线散射光谱对GQDs@MIP进行了表征。优化了影响传感器响应的参数,如制备电极中GQDs@MIP的百分比、再结合溶液和分析溶液的pH值以及孵育时间。使用密度泛函理论(DFT)计算验证了再结合溶液的最佳pH值。在优化条件下,生成了MAL和CBZ的差分脉冲伏安法(DPV)响应校准曲线,结果表明该传感器对MAL在0.02 - 55.00 μM范围内具有线性响应,检测限(LOD)为2 nM(S/N = 3),对CBZ在0.02 - 45.00 μM范围内具有线性响应,低检测限为1 nM(S/N = 3)。结果还证明了所提出传感器的长期稳定性和抗干扰能力。评估了制备电极在实际样品分析中的实际适用性,并获得了良好的回收率值。

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