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基于 WO·0.33HO 纳米棒修饰电极的新型传感器用于检测和降解除草剂多菌灵。

A novel sensor based on WO·0.33HO nanorods modified electrode for the detection and degradation of herbicide, carbendazim.

机构信息

Center for Electrochemical Science & Materials, Department of Chemistry, K. L. E. Institute of Technology, Gokul, Hubballi 580027, Karnataka, India.

Department of Materials Science & Engineering, Ajou University, Suwon 16499, Republic of Korea.

出版信息

J Environ Manage. 2021 Feb 1;279:111611. doi: 10.1016/j.jenvman.2020.111611. Epub 2020 Nov 10.

Abstract

In the present-day scenario, it is necessary to establish more flexible, effective and selective analytical methods that are easy to operate and less expensive. Cyclic voltammetry (CV) can be a useful technique to assess minute quantity of pollutants and in this work, an effort has been made to detect the trace quantification from the environmental samples. Herein, electrochemical sensor was fabricated using tungsten oxide nanorod (WO·0.33HO) for sensitive detection of fungicide, carbendazim (CBZ). Under optimal conditions, while studying the effect of pH on peak current, the highest peak current was observed at pH 4.2. The degradation of CBZ followed the mixed diffusion-adsorption controlled and quasi-reversible processess at the WO·0.33HO/GC electrode surface. Using WO·0.33HO/GCE sensor in SWV provided the lowest limit of detection (LOD) and limit of quantification (LOQ) values of 2.21 × 10 M and 7.37 × 10 M, respectively over the concentration ranges of 1.0 × 10 M to 2.5 × 10 M. The proposed method demonstrates potential applicability of the fabricated sensor for soil and water samples analysis in the management of creating a benign environment.

摘要

在当今的情况下,有必要建立更灵活、有效和选择性的分析方法,这些方法易于操作且成本更低。循环伏安法 (CV) 可以是评估污染物微量的有用技术,在这项工作中,努力从环境样品中检测痕量定量。在此,使用氧化钨纳米棒 (WO·0.33HO) 制造了电化学传感器,用于灵敏检测杀菌剂多菌灵 (CBZ)。在最佳条件下,在研究 pH 值对峰电流的影响时,在 pH 值为 4.2 时观察到最高的峰电流。CBZ 的降解在 WO·0.33HO/GC 电极表面遵循混合扩散-吸附控制和准可逆过程。在 SWV 中使用 WO·0.33HO/GCE 传感器提供了最低的检测限 (LOD) 和定量限 (LOQ) 值,分别为 2.21×10 -6 M 和 7.37×10 -6 M,浓度范围为 1.0×10 -6 M 至 2.5×10 -6 M。该方法证明了所制备的传感器在土壤和水样分析中的潜在适用性,有助于创造良性环境的管理。

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