A WS2/CNF Nanocomposite for Electrochemical Sensing Applications

Tara N Barwa, Daniele Alves, Yiran Luo, Eithne Dempsey, C. Breslin
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Abstract

It is well recognized that antimicrobials are central to society, but they have also entered the aquatic environment posing risks to public health and our essential ecosystems. Therefore, the detection of antimicrobial drugs at low concentration levels in aquatic environments is essential. In this study, a new composite comprising tannic acid modified carbon nanofibers (CNFs) and WS2 was formed to give CNF/WS2 and used in the electrochemical detection of ornidazole, an antimicrobial drug. Ornidazole is a well-known nitroimidazole and it has been detected in various water bodies. Using the CNF/WS2 composite, a linear concentration range extending from 10 nM to 260 mM ornidazole, with a sensitivity of 1.37 mA mM–1 cm–2 was obtained. Very good selectivity was achieved, and the sensor performed well in the analysis of ornidazole in river water, with recoveries ranging from 88.3 to 107.3%.
用于电化学传感应用的 WS2/CNF 纳米复合材料
众所周知,抗菌药物是社会的核心,但它们也进入了水生环境,给公众健康和我们的重要生态系统带来风险。因此,检测水生环境中低浓度水平的抗菌药物至关重要。本研究采用单宁酸改性碳纳米纤维(CNFs)和 WS2 组成新型复合材料 CNF/WS2,并将其用于抗菌药物奥硝唑的电化学检测。奥硝唑是一种著名的硝基咪唑,已在多种水体中检测到。使用 CNF/WS2 复合材料,奥硝唑的线性浓度范围从 10 nM 到 260 mM,灵敏度为 1.37 mA mM-1 cm-2。该传感器具有很好的选择性,在分析河水中的奥硝唑时表现出色,回收率在 88.3% 至 107.3% 之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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