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基于络合作用的吸附溶出伏安法在钴和锌存在下于石墨烯螯合探针上检测镍(II)

Complexation-Based Detection of Nickel(II) at a Graphene-Chelate Probe in the Presence of Cobalt and Zinc by Adsorptive Stripping Voltammetry.

作者信息

Pokpas Keagan, Jahed Nazeem, Baker Priscilla G, Iwuoha Emmanuel I

机构信息

SensorLab, Department of Chemistry, University of the Western Cape, Bellville 7535, South Africa.

出版信息

Sensors (Basel). 2017 Jul 25;17(8):1711. doi: 10.3390/s17081711.

Abstract

The adsorptive stripping voltammetric detection of nickel and cobalt in water samples at metal film electrodes has been extensively studied. In this work, a novel, environmentally friendly, metal-free electrochemical probe was constructed for the ultra-trace determination of Ni in water samples by Adsorptive Cathodic Stripping Voltammetry (AdCSV). The electrochemical platform is based on the adsorptive accumulation of Ni ions directly onto a glassy carbon electrode (GCE) modified with dimethylglyoxime (DMG) as chelating agent and a Nafion-graphene (NGr) nanocomposite to enhance electrode sensitivity. The nafion-graphene dimethylglyoxime modified glassy carbon electrode (NGr-DMG-GCE) shows superior detection capabilities as a result of the improved surface-area-to-volume ratio and enhanced electron transfer kinetics following the incorporation of single layer graphene, while limiting the toxic effects of the sensor by removal of the more common mercury, bismuth and lead films. Furthermore, for the first time the NGr-DMG-GCE, in the presence of common interfering metal ions of Co and Zn demonstrates good selectivity and preferential binding towards the detection of Ni in water samples. Structural and morphological characterisation of the synthesised single layer graphene sheets was conducted by Raman spectrometry, HRTEM and HRSEM analysis. The instrumental parameters associated with the electrochemical response, including accumulation potential and accumulation time were investigated and optimised in addition to the influence of DMG and graphene concentrations. The NGr-DMG-GCE demonstrated well resolved, reproducible peaks, with RSD (%) below 5% and a detection limit of 1.5 µg L for Ni reduction at an accumulation time of 120 s., the prepared electrochemical sensor exhibited good detection and quantitation towards Ni detection in tap water samples, well below 0.1 mg L set by the WHO and EPA standards. This comparable to the South African drinking water guidelines of 0.15 mg L.

摘要

金属膜电极上吸附溶出伏安法检测水样中的镍和钴已得到广泛研究。在本工作中,构建了一种新型、环境友好、无金属的电化学探针,用于通过吸附阴极溶出伏安法(AdCSV)超痕量测定水样中的镍。该电化学平台基于镍离子直接吸附在以丁二酮肟(DMG)为螯合剂和Nafion-石墨烯(NGr)纳米复合材料修饰的玻碳电极(GCE)上,以提高电极灵敏度。由于引入单层石墨烯后表面积与体积比提高且电子转移动力学增强,同时通过去除更常见的汞、铋和铅膜限制了传感器的毒性作用,Nafion-石墨烯-丁二酮肟修饰玻碳电极(NGr-DMG-GCE)显示出卓越的检测能力。此外,NGr-DMG-GCE首次在钴和锌等常见干扰金属离子存在的情况下,对水样中镍的检测表现出良好的选择性和优先结合性。通过拉曼光谱、高分辨透射电子显微镜(HRTEM)和高分辨扫描电子显微镜(HRSEM)分析对合成的单层石墨烯片进行了结构和形态表征。除了研究DMG和石墨烯浓度的影响外,还对与电化学响应相关的仪器参数,包括富集电位和富集时间进行了研究和优化。NGr-DMG-GCE显示出峰形良好、可重现,在120 s富集时间下镍还原的相对标准偏差(RSD)(%)低于5%,检测限为1.5 μg/L。所制备的电化学传感器对自来水样中的镍检测表现出良好的检测和定量能力,远低于世界卫生组织(WHO)和美国环境保护局(EPA)标准设定的0.1 mg/L。这与南非0.15 mg/L的饮用水指南相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5920/5580100/5334d8cbd589/sensors-17-01711-g001.jpg

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