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Wireless Electrosampling of Heavy Metals for Stripping Analysis with Bismuth-Based Janus Particles

机译:重金属的无线电采样,用于基于铋的Janus颗粒的溶出分析

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摘要

In this contribution, a wireless method for the electrolytic sampling of heavy metals at special bismuth-modified particles is presented. For the first time, glassy carbon beads were asymmetrically modified with bismuth using bipolar electrochemistry. The resulting chemically asymmetric beads, so-called Janus particles, could be employed for the wireless electroaccumulation of heavy metal ions in the bismuth film. The qualitative and quantitative aspects of this concept have been studied by using anodic stripping voltammetry with Cd~(2+) and Pb~(2+) as the model ions. Different experimental and instrumental parameters have been optimized; among others, the concentration of Bi~(3+) ions, the deposition conditions for the bismuth-film, and the accumulation time of the target heavy metals. The developed concept could be applied to the transfer of heavy metal ions from a solution into a confined space without need to electrically connect the collector (electrode), thus representing an interesting new approach for trace metal analysis in small volumes.
机译:在这项贡献中,提出了一种在特殊的铋改性颗粒上进行重金属电解采样的无线方法。首次使用双极电化学方法,用铋对玻璃状碳珠进行不对称修饰。所得的化学不对称珠子,即所谓的Janus颗粒,可用于铋膜中重金属离子的无线电累积。通过使用Cd〜(2+)和Pb〜(2+)作为模型离子的阳极溶出伏安法研究了该概念的定性和定量方面。优化了不同的实验和仪器参数;其中,Bi〜(3+)离子的浓度,铋膜的沉积条件和目标重金属的积累时间。所开发的概念可以应用于将重金属离子从溶液转移到密闭空间中,而无需电连接收集器(电极),因此代表了一种用于小体积痕量金属分析的有趣新方法。

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