Kaewket Keerakit, Ngamchuea Kamonwad
School of Chemistry, Institute of Science, Suranaree University of Technology 111 University Ave, Muang District Nakhon Ratchasima 30000 Thailand
RSC Adv. 2023 Feb 2;13(7):4532-4541. doi: 10.1039/d3ra00192j. eCollection 2023 Jan 31.
Herein, a fast and sensitive electrochemical sensor was developed for imidacloprid detection using low-cost disposable microporous carbon screen-printed electrodes. The electrochemical behaviour of imidacloprid at the microporous material was investigated in detail. The developed sensor allowed imidacloprid detection in the linear range of 0.00-1.00 mM with a sensitivity of 14.43 ± 0.42 μA mM and a detection limit of 2.54 μM (3 /). The sensor showed excellent selectivity and high tolerance to possible interference from other tested insecticides and ions. Excellent repeatability (3.42%, = 3) and reproducibility (2.23%, = 3) were demonstrated. Application of the sensor in various fruit and water samples without any treatment showed 96.2-103.0% recoveries. The developed sensor further revealed that the most effective method for removing imidacloprid residue from fruit samples was washing with a mixture of 5% w/v NaCl and 5% w/v bicarbonate at 40 °C.
在此,利用低成本的一次性微孔碳丝网印刷电极开发了一种用于检测吡虫啉的快速灵敏的电化学传感器。详细研究了吡虫啉在微孔材料上的电化学行为。所开发的传感器能够在0.00 - 1.00 mM的线性范围内检测吡虫啉,灵敏度为14.43±0.42 μA mM,检测限为2.54 μM(3 /)。该传感器对其他测试杀虫剂和离子可能产生的干扰表现出优异的选择性和高耐受性。展示了出色的重复性(3.42%,= 3)和再现性(2.23%,= 3)。该传感器在未经任何处理的各种水果和水样中的应用显示回收率为96.2 - 103.0%。所开发的传感器进一步表明,从水果样品中去除吡虫啉残留的最有效方法是在40°C下用5% w/v NaCl和5% w/v碳酸氢盐的混合物洗涤。