首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Elucidation of interference mechanisms caused by iron on stibine electrochemical generation by differential pulse anodic stripping voltametry.A case study
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Elucidation of interference mechanisms caused by iron on stibine electrochemical generation by differential pulse anodic stripping voltametry.A case study

机译:用差分脉冲阳极溶出伏安法阐明铁对锑生成电化学过程的干扰机理。

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摘要

The interference effect caused by the presence of iron-both(II)and(III)oxidation states-on the electrochemical generation of SbH_3 has been characterized.Interference from Fe(III)was more severe than for Fe(II).Total signal suppression was obtained for a Fe(III):Sb(III)concentration ratio of 5:1,whereas a 40% suppression was obtained for Fe(II).A mechanism is proposed based on the results obtained by differential pulse anodic stripping voltametry.The standard conditions used for the hydride electrochemical generation were simulated in the differential pulse anodic stripping voltametry measurements in order to achieve valid conclusions.The reduction of Fe(II)onto the cathode surface prevents the formation of stibine avoiding the recombination of Sb deg with the hydrogen atoms adsorbed on the surface.The mechanism by which the Fe(III)interferes on the stibine formation is related to the co-deposition of the iron and antimony that also avoid the further recombination of the Sb deg .The formation of a specie of stoichiometry not determined(probably 1:1)on the cathode surface may justify the larger interference effect observed for the Fe(III).
机译:表征了铁(II)和(III)氧化态的存在对SbH_3电化学生成的干扰作用.Fe(III)的干扰比Fe(II)严重。 Fe(III):Sb(III)浓度比为5:1时获得了Fe(II),而Fe(II)则获得了40%的抑制。基于差动脉冲阳极溶出伏安法的结果提出了一种机理。为了获得有效的结论,在差分脉冲阳极溶出伏安法测量中模拟了用于氢化物电化学生成的标准条件。阴极表面上的Fe(II)还原可防止形成锑化氢,避免Sb deg与氢重新结合Fe(III)干扰斯蒂宾碱形成的机理与铁和锑的共沉积有关,这也避免了Sb deg的进一步重组。在阴极表面上未确定化学计量的物种(可能为1:1)的变化可能证明对Fe(III)观察到较大的干扰效应。

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