检出限
石墨烯
氧化物
循环伏安法
电化学气体传感器
支撑电解质
多菌灵
材料科学
伏安法
污染物
电化学
环境化学
化学
电极
纳米技术
色谱法
冶金
物理化学
植物
有机化学
杀菌剂
生物
作者
Davalasab Ilager,Shweta J. Malode,Nagaraj P. Shetti
出处
期刊:Chemosphere
[Elsevier]
日期:2022-05-11
卷期号:303: 134919-134919
被引量:48
标识
DOI:10.1016/j.chemosphere.2022.134919
摘要
Incorporating new pollutants and environmental pollution has become a formidable issue as new pollutants are introduced into it and have become a significant concern in recent years. Detection of such pollutants needs a susceptible, selective, and cost-effective sensor that can sense their presence and quantify them at a trace level. In the present study, we have designed a 2D graphene oxide (GO)-based glassy carbon electrode (GCE) electrochemical sensor (GO/GCE) and utilized it as a sensing material for the detection and determination of CRZ. The voltammetric behavior of CRZ was studied using cyclic voltammetry (CV) and square wave voltammetry (SWV) techniques. The SWV was applied to quantify and analyze CRZ in actual samples. A better response of CRZ was noticed at GO/GCE when phosphate buffer solution of pH 4.2 was used as a supporting electrolyte for to experiment. The SWV technique achieved trace-level detection of CRZ. A linearity plot was obtained for the concentration range of 1.0 × 10 −7 M to 2.5 × 10 −4 M with a limit of detection of 1.38 × 10 −8 M. The selectivity of the modified sensor was verified by the interference study of metal ions and other pesticides with CRZ. The agricultural and environmental significance of the developed method was successfully tested by estimating CRZ in water and soil samples. • Fabrication of 2D graphene oxide-based electrode material to quantify CRZ. • The electro-oxidation of CRZ was a quasi-reversible reaction with two electrons and protons participation. • Lower limit of detection of CRZ was found to be 1.38 × 10 −8 M. • 2D GO-based GCE was used to assay CRZ in water and soil samples.
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