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Catalytic Adsorptive Stripping Voltammetric Determination of Germanium Employing the Oxidizing Properties of V(IV)-HEDTA Complex and Bismuth-Modified Carbon-Based Electrodes

机译:催化吸附剥离伏安法测定V(IV) - HEDTA复合物和铋改性碳电极的氧化性能

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摘要

An efficient procedure that may be used to determine germanium traces and combines the advantages of catalytic adsorptive stripping voltammetry (CAdSV) with the convenience of screen-printed electrodes was developed. To induce the CAdSV response of the germanium(IV)-catechol complex, the vanadium(IV)-HEDTA compound was employed in combination with various bismuth-modified homogeneous (glassy carbon, gold coated with a bismuth layer via physical vapor deposition) and heterogeneous (screen-printed carbon, mesoporous carbon, graphene and reduced graphene oxide, polymer-encapsuled carbon fiber) electrodes. This solution had never before been implemented for this purpose. To achieve the most favorable performance of the working electrode, the parameters of bismuth deposition were optimized using a central composite design methodology. SEM imaging and contact angle measurements confirmed the long-term stability and high chemical resistance of the electrodes against the oxidizing action of V(IV)-HEDTA. Under optimized conditions, the method made it possible to detect nanomolar concentrations of germanium with favorable detection limits, high sensitivity, and a wide linear range of 5–90 nM of Ge(IV).
机译:可被用来确定锗迹线和结合催化吸附溶出伏安法(CAdSV)用丝网印刷电极的便利的优点的有效程序的开发。以诱导锗(IV)的CAdSV响应-catechol复杂,钒(IV)化合物-HEDTA与组合物中使用的各种铋改性的均质的(玻璃碳,金涂覆有通过物理气相沉积铋层)和异构(丝网印刷碳,中孔碳,石墨烯和还原的石墨烯氧化物,聚合物微胶囊的碳纤维)的电极。该解决方案以前从未实现这个目的。为了达到工作电极的最有利的性能,铋沉积的参数使用中央复合设计方法进行了优化。 SEM成像和接触角测量证实了长期稳定性和抗V(IV)-HEDTA的氧化作用的电极的高耐化学性。在优化条件下,该方法使得有可能检测锗的纳摩尔浓度具有良好的检测限,高灵敏度,以及5-90纳米的Ge(IV)的线性范围宽。

著录项

  • 期刊名称 Membranes
  • 作者单位
  • 年(卷),期 2021(11),7
  • 年度 2021
  • 页码 524
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类 外科学;
  • 关键词

    机译:锗测定;钒(IV)-HEDTA复合物;催化吸附剥离伏安法(CADSV);铋膜;玻璃碳;丝网印刷电极;

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