Department of Environmental Engineering and Earth Sciences, Clemson University, Clemson, SC, USA.
Global Alliance for Rapid Diagnostics, Michigan State University, East Lancing, MI, USA.
Mikrochim Acta. 2022 Jun 13;189(7):254. doi: 10.1007/s00604-022-05355-w.
Organophosphorus pesticides are widely used in industrial agriculture and have been associated with water pollution and negative impacts on local ecosystems and communities. There is a need for testing technologies to detect the presence of pesticide residues in water sources, especially in developing countries where access to standard laboratory methods is cost prohibitive. Herein, we outline the development of a facile electrochemical sensor for amperometric determination of organophosphorus pesticides in environmental water samples. A three-electrode system was fabricated via UV laser-inscribing on a polyimide film. The working electrode was functionalized with copper nanoparticles with affinity toward organophosphate compounds. The sensor showed a limit of detection (LOD) of 3.42 ± 1.69 µM for glyphosate, 7.28 ± 1.20 µM for glufosinate, and 17.78 ± 7.68 µM for aminomethylphosphonic acid (AMPA). Sensitivity was highest for glyphosate (145.52 ± 36.73 nA⋅µM⋅cm) followed by glufosinate (56.98 ± 10.87 nA⋅µM⋅cm), and AMPA (30.92 ± 8.51 nA⋅µM⋅cm). The response of the sensor is not significantly affected by the presence of several ions and organic molecules commonly present in natural water samples. The developed sensor shows promising potential for facilitating environmental monitoring of organophosphorus pesticide residues, which is a current need in several parts of the world.
有机磷农药广泛应用于工业农业,与水污染以及对当地生态系统和社区的负面影响有关。需要开发检测技术来检测水源中农药残留的存在,特别是在标准实验室方法成本过高的发展中国家。本文概述了一种用于环境水样中有机磷农药电化学安培检测的简便传感器的开发。通过在聚酰亚胺薄膜上进行紫外激光刻蚀制备了三电极系统。工作电极用对有机磷化合物具有亲和力的铜纳米粒子功能化。该传感器对草甘膦的检测限 (LOD) 为 3.42 ± 1.69 μM,对草铵膦的检测限为 7.28 ± 1.20 μM,对氨甲基磷酸 (AMPA) 的检测限为 17.78 ± 7.68 μM。草甘膦的灵敏度最高 (145.52 ± 36.73 nA⋅μM⋅cm),其次是草铵膦 (56.98 ± 10.87 nA⋅μM⋅cm) 和 AMPA (30.92 ± 8.51 nA⋅μM⋅cm)。传感器的响应不受几种常见于天然水样中的离子和有机分子的存在显著影响。所开发的传感器在促进世界上几个地区对有机磷农药残留的环境监测方面显示出有希望的潜力。