Microfluidic paper-based chip for parathion-methyl detection based on a double catalytic amplification strategy

检出限 催化作用 纳米技术 分析物 材料科学 分子印迹聚合物 微流控 电化学 选择性 电极 化学 色谱法 有机化学 物理化学
作者
Shuhuai Li,Chaohai Pang,Xionghui Ma,Yanling Zhang,Zhixiang Xu,Jianping Li,Meng Zhang,Mingyue Wang
出处
期刊:Mikrochimica Acta [Springer Science+Business Media]
卷期号:188 (12) 被引量:27
标识
DOI:10.1007/s00604-021-05084-6
摘要

The rapid detection of insecticides such as parathion-methyl (PM) requires methods with high sensitivities and selectivities. Herein, a dual catalytic amplification strategy was developed using Fe3O4 nanozyme-supported carbon quantum dots and silver terephthalate metal–organic frameworks (Fe3O4/C-dots@Ag-MOFs) as current amplification elements. Based on this strategy, a novel electrochemical microfluidic paper-based chip was designed to detect PM. Fe3O4/C-dots@Ag-MOFs were synthesised by a hydrothermal method, and a molecularly imprinted polymer (MIP) was then synthesised on the surface of Fe3O4/C-dots@Ag-MOFs using PM as a template molecule. Finally, the reaction zone of a chip was modified with MIP/Fe3O4/C-dots@Ag-MOFs. PM from a sample introduced into the reaction zone was captured by the MIP, which generated a reduction current response at − 0.53 V in a three-electrode system embedded in the chip. Simultaneous catalysis by Fe3O4/C-dots and Ag-MOFs significantly enhanced the signal. The chip had a detection limit of 1.16 × 10−11 mol L−1 and was successfully applied to the determination of PM in agricultural products and environmental samples with recovery rates ranging from 82.7 to 109%, with a relative standard deviation (RSD) of less than 5.0%. This approach of combining a dual catalytic amplification strategy with an MIP significantly increased the sensitivity as well as selectivity of chips and can potentially be used to detect a wide variety of target analytes using microfluidic paper-based chips.Graphical abstract
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