4.7 Article

Stalling behaviour of chloride ions: A non-enzymatic electrochemical detection of α-Endosulfan using CuO interface

Journal

SENSORS AND ACTUATORS B-CHEMICAL
Volume 293, Issue -, Pages 100-106

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2019.04.141

Keywords

alpha-endosulfan; Pesticide; Electrochemical sensor; CuO; Micro-Interface

Funding

  1. Science and Engineering Research Board, Department of Science and Technology, New Delhi [EMR/2016/001789, SR/FST/ET-II/2018/221]

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Excessive and unsafe usage of pesticides lead to adverse effect on human beings, plants, animals and aquatic life. Endosulfan, categorized as class-I pesticide by World Health Organization, is a highly toxic pesticide, which is currently being used across countries although it has been banned. In this context, a non-enzymatic electrochemical sensor with copper oxide interface has been developed to detect a-endosulfan in water samples. Hydrothermal synthesized CuO microspheres were characterized using X-ray Diffractometer, Scanning Electron Microscope and X-ray Photoelectron Spectrometer. CuO micro-interface modified gold working electrode along with N counter electrode and Ag/AgCl reference electrode were employed to carry out Differential Pulse Voltammetry (DPV) and amperometry studies to detect the presence of a-endosulfan in water. The stalling behaviour of chloride ions present in a-endosulfan in reducing the current intensity confirmed the presence and concentration of a-endosulfan. The impedance variation for the varying concentration of alpha-endosulfan confirmed the proposed sensing mechanism. The sensor showed a linear range of 4-20 nM, and sensitivity of 0.03 mu A nM(-1). The relative standard deviation for the repeatability and reproducibility was 1.69%. The stability of the developed biosensor was 80.93% for 15 days.

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