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使用负载铋的纳米结构导电碳带作为一次性工作电极,用于纸基分析器件中的溶出分析。

Using nanostructured conductive carbon tape modified with bismuth as the disposable working electrode for stripping analysis in paper-based analytical devices.

机构信息

Institute of Analytical Chemistry for Life Science, School of Public Health, Nantong University, 9 Seyuan Road, Nantong 226019, People's Republic of China; Institute of Nautical Medicine, Nantong University, 9 Seyuan Road, Nantong 226019, People's Republic of China.

出版信息

Talanta. 2013 Oct 15;115:235-40. doi: 10.1016/j.talanta.2013.04.071. Epub 2013 May 2.

Abstract

Low cost disposable working electrodes are specifically desired for practical applications of electrochemical detection considering maturity of electrochemical stations and data collection protocols. In this paper double-sided conductive adhesive carbon tape with nanostructure was applied to fabricate disposable working electrodes. Being supported by indium tin oxide glass, the prepared carbon tape electrodes were coated with bismuth film for stripping analysis of heavy metal ions. By integrating the bismuth modified electrodes with paper-based analytical devices, we were able to differentiate Zn, Cd and Pb ions with the sample volume of around 15 μL. After the optimization of parameters, including modification of bismuth film and the area of the electrodes, etc., Pb ions could be measured in the linear range from 10 to 500 μg/L with the detection limit of 2 μg/L. Our experimental results revealed that the disposable modified electrodes could be used to quantify migrated lead from toys with the results agreed well with that using atomic absorption spectrometry. Although bismuth modification and stripping analysis could be influenced by the low conductivity of the carbon tape, the low cost disposable carbon tape electrodes take the advantages of large-scaled produced double-sided carbon tape, including its reproducible nanostructure and scaled-up fabrication process. In addition, the preparation of disposable electrodes avoids time-consuming pretreatment and experienced operation. This study implied that the carbon tape might be an alternative candidate for practical applications of electrochemical detection.

摘要

考虑到电化学工作站和数据采集协议的成熟度,对于电化学检测的实际应用,人们特别希望有一种低成本的一次性工作电极。本文采用具有纳米结构的双面导电胶碳带制作一次性工作电极。在铟锡氧化物玻璃的支撑下,制备的碳带电极被涂覆铋膜,用于重金属离子的溶出分析。通过将铋修饰电极与纸基分析器件集成,我们能够在 15μL 左右的样品体积下区分 Zn、Cd 和 Pb 离子。在对参数进行优化后,包括铋膜的修饰和电极面积等,Pb 离子的线性范围可以从 10μg/L 到 500μg/L,检测限为 2μg/L。我们的实验结果表明,这种一次性修饰电极可用于定量测定玩具中的迁移铅,其结果与原子吸收光谱法的结果吻合良好。尽管铋的修饰和溶出分析可能会受到碳带导电性差的影响,但低成本的一次性碳带电极具有大规模生产的双面碳带的优势,包括其可重复的纳米结构和规模化的制造工艺。此外,一次性电极的制备避免了耗时的预处理和有经验的操作。这项研究表明,碳带可能是电化学检测实际应用的一种替代选择。

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