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Pseudopolarography of trace metals. Part III. Determination of stability constants of labile metal complexes

机译:微量金属的伪极谱法。第三部分不稳定金属配合物的稳定常数的测定

摘要

Suitability of the pseudopolarographic approach for determination of the stability constants of labile metal complexes at low metal concentrations is explored. It is shown that the methodology based on the DeFord-Hume principle can be successfully applied to treat data obtained from pseudopolarograms. For reversible electrochemical systems, such as thallium(I)-chloride or cadmium(II)-chloride, the half-wave potential of a pseudopolarogram, or the corresponding "critical" potential, can be used to calculate the stability constants. A "formal" potential, evaluated by manual fitting of experimental and simulated (pseudo)polarograms, or a potential in a range where all curves yield a reversible slope, can be used as the "critical" potential. For systems in which reversibility of the electrochemical reaction changes (zinc(II)-oxalate and bismuth(Ill)-chloride), the shift of the half-wave potential depends both on the complexation parameters and on reversibility of the electrochemical reaction. Therefore, in such cases only the "critical" potential can be used for determination of stability constants. All calculated stability constants presented in the paper are in good agreement with the literature values. The benefit of using pseudopolarographic approach lies in the minimization of various effects (such as precipitation, adsorption, ligand excess, etc.), which can influence determination of stability constants at higher metal concentrations.
机译:探索了拟极谱法在低金属浓度下测定不稳定金属络合物稳定常数的适用性。结果表明,基于DeFord-Hume原理的方法可以成功地应用于处理从伪极谱图获得的数据。对于可逆的电化学系统,例如氯化((I)或氯化镉(II),伪极谱图的半波电势或相应的“临界”电势可用于计算稳定性常数。通过手动拟合实验和模拟(伪)极谱图评估的“形式”电势,或所有曲线均产生可逆斜率的范围内的电势,可以用作“临界”电势。对于电化学反应可逆性发生变化的系统(草酸锌(II)和氯化铋(III)),半波电势的移动既取决于络合参数,也取决于电化学反应的可逆性。因此,在这种情况下,仅“临界”电势可用于确定稳定性常数。本文中提出的所有计算出的稳定常数均与文献值相符。使用伪极谱法的好处在于最小化了各种影响(例如沉淀,吸附,配体过量等),这些影响会影响较高金属浓度下稳定常数的确定。

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  • 作者

    Omanović Dario;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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