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Theoretical Treatment of Ion Transfers in Two Polarizable Interface Systems When the Analyte Has Access to Both Interfaces

机译:当分析物访问两个接口时,两个可极化界面系统中离子转移的理论处理

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摘要

A new theory is presented to tackle the study of transfer processes of hydrophilic ions in two polarizable interface systems when the analyte is initially present in both aqueous phases. The treatment is applied to macrointerfaces (linear diffusion) and microholes (highly convergent diffusion), obtaining analytical equations for the current response in any voltammetric technique. The novel equations predict two signals in the current-potential curves that are symmetric when the compositions of the aqueous phases are identical while asymmetries appear otherwise. The theoretical results show good agreement with the experimental behavior of the "double transfer voltammograms" reported by Dryfe et al. in cyclic voltammetry (CV) (Anal. Chem. 2014, 86, 435-442) as well as with cyclic square wave voltammetry (cSWV) experiments performed in the current work. The theoretical treatment is also extended to the situation where the target ion is lipophilic and initially present in the organic phase. The theory predicts an opposite effect of the lipophilicity of the ion on the shape of the voltammograms, which is validated experimentally via both CV and cSWV. For the above two cases, simple and manageable expressions and diagnosis criteria are derived for the qualitative and quantitative study of ion lipophilicity. The ion-transfer potentials can be easily quantified from the separation between the two signals making use of explicit analytical equations.
机译:提出了一种新的理论,以解决两个可极化界面系统中亲水离子的转移过程的研究,当分析物最初存在于水相中时。将处理应用于宏观接收(线性扩散)和微孔(高收敛扩散),以任何伏安技术获得用于电流响应的分析方程。新颖的等式预测当前 - 电位曲线中的两个信号,当水相的组合物相同而不对称地出现时是相同的。理论结果与Dryfe等人报告的“双转移伏安图”的实验行为吻合良好。在循环伏安法(CV)(肛门。Chem.2004,86,435-442以及当前工作中进行的循环方波伏安法(CSWV)实验。理论处理也扩展到靶离子是亲脂性并且最初存在于有机相中的情况。该理论预测离子对伏安图形状的亲脂性的相反效果,通过CV和CSWV实验验证。对于上述两种情况,可以获得简单和可管理的表达和诊断标准,用于离子亲脂性的定性和定量研究。离子传递电位可以容易地量化利用明确分析方程的两个信号之间的分离。

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  • 来源
    《Analytical chemistry》 |2018年第3期|共7页
  • 作者单位

    Univ Murcia Fac Quim Dept Quim Fis Reg Campus Int Excellence Campus Mare Nostrum E-30100 Murcia Spain;

    Univ Murcia Fac Quim Dept Quim Fis Reg Campus Int Excellence Campus Mare Nostrum E-30100 Murcia Spain;

    Univ Murcia Fac Quim Dept Quim Fis Reg Campus Int Excellence Campus Mare Nostrum E-30100 Murcia Spain;

    Univ Los Andes Dept Quim Fac Ciencias Lab Electroquim Merida 5101 Venezuela;

    Univ Murcia Fac Quim Dept Quim Analit E-30100 Murcia Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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