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电化学法用石墨烯-多壁碳纳米管糊电极轻松测定水中双氯芬酸钠痕量。

Electrochemical Method for Ease Determination of Sodium Diclofenac Trace Levels in Water Using Graphene-Multi-Walled Carbon Nanotubes Paste Electrode.

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

Int J Environ Res Public Health. 2021 Dec 21;19(1):29. doi: 10.3390/ijerph19010029.

Abstract

Sodium diclofenac (DCF) presence reported in water use cycle at various concentrations including trace levels necessitates continuous development of advanced analytical method for its determination. In this work, ease electrochemical methods for DCF determination based on voltammetric and amperometric techniques were proposed using a simple combination of graphene with multi-walled carbon nanotubes as paste electrode. Integration of the graphene with multi-walled carbon nanotubes enlarged the electroactive surface area of the electrode and implicitly enhanced the electrochemical response for DCF determination. On the basis of the sorption autocatalytic effect manifested at low concentration of DCF, we found that the preconcentration step applied prior to differential-pulsed voltammetry (DPV) and multiple-pulsed amperometry (MPA) allowed for the enhancement of the electroanalytical performance of the DCF electrochemical detections, which were validated by testing in tap water. The lowest limit of detection (LOD) of 1.40 ng·L was found using preconcentration prior to DPV under optimized operating conditions, which is better than that reached by other carbon-based electrodes reported in the literature.

摘要

钠双氯芬酸(DCF)以痕量水平存在于水的使用循环中,其浓度各异,因此需要不断开发其测定的先进分析方法。在这项工作中,提出了基于伏安法和安培法的简便方法,使用石墨烯与多壁碳纳米管的简单组合作为糊电极来测定 DCF。石墨烯与多壁碳纳米管的结合扩大了电极的有效表面积,从而隐含地增强了用于 DCF 测定的电化学响应。基于在 DCF 的低浓度下表现出的吸附自催化效应,我们发现,在差分脉冲伏安法(DPV)和多脉冲安培法(MPA)之前应用的预浓缩步骤允许增强 DCF 电化学检测的电分析性能,这通过在自来水中进行测试得到了验证。在优化的操作条件下,通过在 DPV 之前进行预浓缩,发现最低检测限(LOD)为 1.40ng·L,优于文献中报道的其他基于碳的电极达到的检测限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3df8/8750901/dcb8aa6d4bf8/ijerph-19-00029-g001.jpg

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