分子印迹聚合物(MIPs)在农药检测丝网印刷电极上的最新应用

IF 2.2 4区 工程技术 Q3 ELECTROCHEMISTRY
Adilah Mohamed Nageib, Amanatuzzakiah Abdul Halim, Anis Nurashikin Nordin, F. Ali
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引用次数: 2

摘要

农业部门过度使用农药使人们面临食品污染。农药对人类有毒,可对健康产生急性和慢性影响。为了保护食品消费者免受农药的不良影响,迫切需要一个农药残留的快速监测系统。分子印迹聚合物(MIP)在丝网印刷电极(SPE)上是一种领先的和有前途的电化学传感方法,用于检测包括农药在内的多种残留物。尽管近年来用于污染物检测的分析仪器(如HPLC和GC/MS)取得了巨大的发展,但这些传统技术耗时且费力。此外,印迹式SPE检测系统提供了一种简单的便携式设置,将所有电极集成到单个条带中,与传统棒电极连接的MIP相比,这是一种更经济的方法。近年来,关于MIPs的生产和传感应用已经发表了大量的综述,然而,研究领域缺乏利用SPE技术在电化学传感器上使用MIPs的综述。本文从最近发表的马拉硫磷、毒死蜱、对氧磷和环己素四种农药的检测中,对MIP技术在裸体和改性spe上的应用进行了综述。采用不同的分子印迹途径制备仿生传感器,包括溶液聚合、热聚合和电聚合。讨论了每种mip修饰的SPE的独特特征,并对论文的研究结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Applications of Molecularly Imprinted Polymers (MIPs) on Screen-Printed Electrodes for Pesticide Detection
The overuse of pesticides in agricultural sectors exposes people to food contamination. Pesticides are toxic to humans and can have both acute and chronic health effects. To protect food consumers from the adverse effects of pesticides, a rapid monitoring system of the residues is in dire need. Molecularly imprinted polymer (MIP) on a screen-printed electrode (SPE) is a leading and promising electrochemical sensing approach for the detection of several residues including pesticides. Despite the huge development in analytical instrumentation developed for contaminant detection in recent years such as HPLC and GC/MS, these conventional techniques are time-consuming and labor-intensive. Additionally, the imprinted SPE detection system offers a simple portable setup where all electrodes are integrated into a single strip, and a more affordable approach compared to MIP attached to traditional rod electrodes. Recently, numerous reviews have been published on the production and sensing applications of MIPs however, the research field lacks reviews on the use of MIPs on electro-chemical sensors utilizing the SPE technology. This paper presents a distinguished overview of the MIP technique used on bare and modified SPEs for the detection of pesticides from four recent publications which are malathion, chlorpyrifos, paraoxon and cyhexatin. Different molecular imprint routes were used to prepare these biomimetic sensors including solu-tion polymerization, thermal polymerization, and electropolymerization. The unique characteristics of each MIP-modified SPE are discussed and the comparison among the findings of the papers is critically reviewed.
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来源期刊
CiteScore
6.30
自引率
8.10%
发文量
44
期刊介绍: Covering fields: - Batteries and Energy Storage - Biological Electrochemistry - Corrosion Science and Technology - Electroanalytical Chemistry and Sensor Technology - Electrocatalysis - Electrochemical Capacitors & Supercapcitors - Electrochemical Engineering - Electrodeposition and Surface Treatment - Environmental Science and Technology - Fuel Cells - Material Electrochemistry - Molecular Electrochemistry and Organic Electrochemistry - Physical Electrochemistry - Solar Energy Conversion and Photoelectrochemistry
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