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NH-MIL-125(钛)/还原氧化石墨烯增强对农产品中杀螟硫磷的电化学检测

NH-MIL-125(Ti)/Reduced Graphene Oxide Enhanced Electrochemical Detection of Fenitrothion in Agricultural Products.

作者信息

Shu Zaixi, Zou Yue, Wu Xuyue, Zhang Qi, Shen Yafang, Xiao Anhong, Duan Shuo, Pi Fuwei, Liu Xiaodan, Wang Jiahua, Dai Huang

机构信息

College of Food Science and Engineering, Wuhan Polytechnic University, Wuhan 430023, China.

School of Grain Science and Technology, Jiangsu University of Science and Technology, Zhenjiang 212004, China.

出版信息

Foods. 2023 Apr 4;12(7):1534. doi: 10.3390/foods12071534.

Abstract

The abuse of organophosphate pesticides causes serious threats to human health, which threatens approximately 3 million people and leads to more than 2000 deaths each year. Therefore, it is necessary to determine the residue of fenitrothion (FT) in environmental and food samples. Herein, we developed a non-enzymatic electrochemical sensor with differential pulse voltammetry signal output to determine FT in model solutions and spiked samples. Delicately, the sensor was designed based on the fabrication of hydrothermally synthesized titanium-based metal-organic frameworks (MOFs) material (NH-MIL-125(Ti))/reduced graphene oxide (RGO) (NH-MIL-125(Ti)/RGO) nanocomposites for better target enrichment and electron transfer. The peak response of differential pulse voltammetry for FT under optimized conditions was linear in the range of 0.072-18 μM with the logarithm of concentrations, and the detection limit was 0.0338 μM. The fabricated sensor also demonstrated high stability and reproducibility. Moreover, it exhibited excellent sensing performances for FT in spiked agricultural products. The convenient fabrication method of NH-MIL-125(Ti)/RGO opens up a new approach for the rational design of non-enzymatic detection methods for pesticides.

摘要

有机磷酸酯类农药的滥用对人类健康构成严重威胁,每年约有300万人受到威胁,导致2000多人死亡。因此,有必要测定环境和食品样品中杀螟硫磷(FT)的残留量。在此,我们开发了一种具有差分脉冲伏安法信号输出的非酶电化学传感器,用于测定模型溶液和加标样品中的FT。具体而言,该传感器基于水热合成的钛基金属有机框架材料(MOFs)(NH-MIL-125(Ti))/还原氧化石墨烯(RGO)(NH-MIL-125(Ti)/RGO)纳米复合材料的制备,以实现更好的目标富集和电子转移。在优化条件下,FT的差分脉冲伏安法峰响应与浓度的对数在0.072-18 μM范围内呈线性关系,检测限为0.0338 μM。所制备的传感器还具有高稳定性和重现性。此外,它对加标农产品中的FT表现出优异的传感性能。NH-MIL-125(Ti)/RGO简便的制备方法为农药非酶检测方法的合理设计开辟了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c051/10093892/6655e2452c92/foods-12-01534-sch001.jpg

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