Development of a nanocopper-decorated laser-scribed sensor for organophosphorus pesticide monitoring in aqueous samples

Author:

Bahamon-Pinzon DavidORCID,Moreira GeisiannyORCID,Obare SherineORCID,Vanegas DianaORCID

Abstract

Abstract    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−1⋅cm−2) followed by glufosinate (56.98 ± 10.87 nA⋅µM−1⋅cm−2), and AMPA (30.92 ± 8.51 nA⋅µM−1⋅cm−2). 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. Graphical Abstract

Publisher

Springer Science and Business Media LLC

Subject

Analytical Chemistry

Reference34 articles.

1. Benbrook CM (2016) Trends in glyphosate herbicide use in the United States and globally. Environ Sci Eur 28(1):1–15

2. World Health Organization (WHO)/International Agency for Research on Cancer (IARC) (2017) IARC Monographs on the evaluation of carcinogenic risks to humans. Volume 112. Some organophosphate insecticides and herbicides.

3. Bai SH, Ogbourne SM (2016) Glyphosate: environmental contamination, toxicity and potential risks to human health via food contamination. Environ Sci Pollut Res 23(19):18988–19001

4. Acquavella JF, Alexander BH, Mandel JS, Gustin C, Baker B, Chapman P, Bleeke M (2004) Glyphosate biomonitoring for farmers and their families: results from the Farm Family Exposure Study. Environ Health Perspect 112(3):321–326

5. World Health Organization (WHO) 2015 IARC monographs Volume 112: evaluation of five organophosphate insecticides and herbicides Lyon France

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