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首页> 外文期刊>Analytica chimica acta >APPLICATION OF POTENTIOMETRIC STRIPPING ANALYSIS FOR SPECIATION OF COPPER COMPLEXES WITH ADSORBABLE LIGANDS ON THE MERCURY ELECTRODE
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APPLICATION OF POTENTIOMETRIC STRIPPING ANALYSIS FOR SPECIATION OF COPPER COMPLEXES WITH ADSORBABLE LIGANDS ON THE MERCURY ELECTRODE

机译:电位溶出分析在汞电极上吸附配位铜络合物的形态分析中的应用。

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Potentiometric stripping analysis (PSA) was used for the determination of equilibrium parameters of complexes of copper(II) with humic acids (HA, adsorbable at the mercury electrode surface), at pH 6.5. The calculations were performed by the DeFord-Hume's method or through the material balance of the metal together with the equation dt/dE = (1/2)[Cu](t) (t is the stripping time, E is the working electrode potential, C is a constant, (D) over bar is the average diffusion coefficient of all forms of metal present in the solution and [Cu](t) is the total copper(II) concentration). For comparison, the study was also carried out by differential pulse anodic stripping voltammetry (DPASV) and by potentiometry with a copper(II) ion-selective electrode (ISE). It was found that for HA concentrations lower than 0.1 mmol/l the adsorption phenomena do not interfere in the determination of the equilibrium parameters (K-def) by PSA, but interfere markedly in DPASV. The values of the function log K-def = f(log theta) obtained by both PSA and ISE techniques fit the same isotherm, the form of which is typical for chemical systems involving heterogeneous ligands. In contrast, the values of log K-def obtained by DPASV fit a non-typical isotherm in total disagreement with that obtained by ISE. [References: 42]
机译:电位溶出分析(PSA)用于测定铜(II)与腐殖酸(HA,可吸附在汞电极表面)在pH 6.5下的配合物的平衡参数。计算是通过DeFord-Hume方法或通过金属的材料平衡以及等式dt / dE = (1/2)[Cu](t)进行的(t为溶出量时间,E是工作电极电势,C是常数,(D)跨栏是溶液中存在的所有形式金属的平均扩散系数,[Cu](t)是总铜(II)浓度)。为了进行比较,还通过差分脉冲阳极溶出伏安法(DPASV)和铜(II)离子选择电极(ISE)的电位法进行了研究。已发现,对于低于0.1 mmol / l的HA浓度,吸附现象不会干扰PSA测定平衡参数(K-def),但会显着干扰DPASV。通过PSA和ISE技术获得的函数log K-def = f(log theta)的值适合相同的等温线,其形式对于涉及异质配体的化学系统来说是典型的。相反,通过DPASV获得的log K-def值与通过ISE获得的值完全不同,因此符合非典型等温线。 [参考:42]

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