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基于纳米结构碳糊电极的高灵敏度和同时电化学测定水中的非甾体抗炎药。

Highly sensitive and simultaneous electrochemical determinations of non-steroidal anti-inflammatory drugs in water using nanostructured carbon-based paste electrodes.

机构信息

"Coriolan Drăgulescu" Institute of Chemistry, Romanian Academy, 24 Mihai Viteazu Bvd., 300223 Timisoara, Romania.

Department of Applied Chemistry and Engineering of Inorganic Compounds and Environment, Politehnica University of Timisoara, 6 Bv. V. Parvan, 300223 Timisoara, Romania.

出版信息

Sci Total Environ. 2022 Nov 10;846:157412. doi: 10.1016/j.scitotenv.2022.157412. Epub 2022 Jul 16.

Abstract

Simple and fast simultaneous quantifications in water of anti-inflammatory drugs, which belong to the emerging pollutants, represents a great challenge for water quality control. The development of electrochemical methods to meet the simultaneous and concomitant detection requirements depends mainly on the electrode material. The fullerene‑carbon nanofiber (FULL/CNF) and graphene‑carbon nanotubes (GR/CNT) paste electrodes as sensing elements were employed for the first time for the determination of diclofenac (DCF), naproxen (NPX) and ibuprofen (IBP) simultaneously and concomitantly. The comparative morphostructural and electrochemical characterizations of both electrodes were achieved by scanning electron microscopy (SEM) and cyclic voltammetry (CV). Differential-pulsed voltammetry (DPV), chronoamperometry (CA) and multiple-pulsed amperometry (MPA) were used for detection tests. FULL/CNF electrode was suitable to develop a simultaneous DPV-based detection methodology that allowed reaching the lowest limit of detections of 0.230 nM for DCF, 0.310 nM for NPX and 0.180 nM for IBP. GR/CNT electrode did not provide stability for DPV-based detection, but the lowest limits of detection of 0.149 nM for DCF, 0.809 nM for NPX and 0.640 nM for IBP were achieved by MPA-based methodology. Both electrodes, linked to specific detection technique, showed good reproducibility, stability and ability to measure DCF, NPX and IBP simultaneously in aqueous solution. The satisfactory results achieved by analysis of real surface water sample (Bega River, Timisoara city, Romania) indicated that the proposed voltammetric and amperometric methodologies using both electrodes have great potential for practical applications in analysis of different water samples.

摘要

简单、快速地同时定量检测水中属于新兴污染物的抗炎药物,这对水质控制是一项巨大的挑战。为了满足同时和伴随检测的要求,电化学方法的发展主要取决于电极材料。首次将富勒烯-碳纤维纳米纤维(FULL/CNF)和石墨烯-碳纳米管(GR/CNT)糊剂电极用作传感元件,用于同时和同时测定双氯芬酸(DCF)、萘普生(NPX)和布洛芬(IBP)。通过扫描电子显微镜(SEM)和循环伏安法(CV)对两个电极进行了比较形态结构和电化学特性研究。差分脉冲伏安法(DPV)、计时安培法(CA)和多脉冲安培法(MPA)用于检测测试。FULL/CNF 电极适合开发基于 DPV 的同时检测方法,该方法允许达到最低检测限,对于 DCF 为 0.230 nM,对于 NPX 为 0.310 nM,对于 IBP 为 0.180 nM。GR/CNT 电极不能为基于 DPV 的检测提供稳定性,但通过基于 MPA 的方法可以达到最低检测限,对于 DCF 为 0.149 nM,对于 NPX 为 0.809 nM,对于 IBP 为 0.640 nM。将两个电极与特定的检测技术相结合,显示出良好的重现性、稳定性和同时在水溶液中测量 DCF、NPX 和 IBP 的能力。通过对实际地表水样本(罗马尼亚蒂米什瓦拉市贝加河)的分析,得到了令人满意的结果,这表明使用这两个电极的提议的伏安法和安培法在不同水样的分析中具有很大的实际应用潜力。

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