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基于 Cu 金属有机框架的电化学传感器用于蔬菜提取物中马拉硫磷的高灵敏和选择性测定。

Highly sensitive and selective determination of malathion in vegetable extracts by an electrochemical sensor based on Cu-metal organic framework.

机构信息

Department of Chemistry, Faculty of Science, University Malaya, Kuala Lumpur, Malaysia.

Ministry of Education, Muscat, Sultanate of Oman.

出版信息

J Environ Sci Health B. 2019;54(12):930-941. doi: 10.1080/03601234.2019.1652072. Epub 2019 Aug 13.

Abstract

This article demonstrates the first application of a copper-based porous coordination polymer (BTCA-P-Cu-CP) as a carbon paste electrode (CPE) modifier for the detection of malathion. The electrochemical behavior of BTCA-P-Cu-CP/CPE was explored using cyclic voltammetry (CV) while chrono-amperometry methods were applied for the analytical evaluation of the sensor performance. Under optimized conditions, the developed sensor exhibited high reproducibility, stability, and wide dynamic range (0.6-24 nM) with the limits of detection and sensitivity equal to 0.17 nM and 5.7 µAnMcm, respectively, based on inhibition signal measurement. Furthermore, the presence of common coexisting interfering species showed a minor change in signals (<4.4%). The developed sensor has been applied in the determination of malathion in spiked vegetable extracts. It exhibited promising results in term of fast and sensitive determination of malathion in real samples at trace level with recoveries of 91.0 to 104.4%. (RSDs < 5%,  = 3). A comparison of the two studied techniques showed that the HPLC technique is unable to detect malathion when the concentration is lower than 1.8 µM while 0.006 µM is detected with appropriate RSDs 0.2-5.2% ( = 3) by amperometric method. Due to the high sensitivity and selectivity, this new electrochemical sensor will be useful for monitoring trace malathion in real samples.

摘要

本文首次将一种基于铜的多孔配位聚合物(BTCA-P-Cu-CP)作为碳糊电极(CPE)修饰剂应用于马拉硫磷的检测。通过循环伏安法(CV)探索了 BTCA-P-Cu-CP/CPE 的电化学行为,同时应用计时安培法对传感器性能进行了分析评估。在优化条件下,所开发的传感器表现出高重现性、稳定性和宽动态范围(0.6-24 nM),检测限和灵敏度分别为 0.17 nM 和 5.7 µAnMcm,基于抑制信号测量。此外,常见共存干扰物质的存在对信号的变化影响较小(<4.4%)。该传感器已应用于加标蔬菜提取物中马拉硫磷的测定。在痕量水平下,该传感器在实际样品中对马拉硫磷的快速灵敏测定表现出良好的结果,回收率为 91.0%至 104.4%(RSDs < 5%,n = 3)。对两种研究技术的比较表明,当浓度低于 1.8 µM 时,HPLC 技术无法检测马拉硫磷,而电流法可检测到适当的 RSDs 为 0.2-5.2%(n = 3)的 0.006 µM 马拉硫磷。由于具有高灵敏度和选择性,这种新型电化学传感器将有助于监测实际样品中的痕量马拉硫磷。

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