首页> 外文期刊>Analytica chimica acta >Voltammetric investigation of the complexation equilibria in the presence of a low level of supporting electrolyte .1. Steady-state current-potential curves for inert complexes
【24h】

Voltammetric investigation of the complexation equilibria in the presence of a low level of supporting electrolyte .1. Steady-state current-potential curves for inert complexes

机译:在低水平的支持电解质存在下,络合平衡的伏安法研究1。惰性配合物的稳态电流-势曲线

获取原文
获取原文并翻译 | 示例
           

摘要

The use of microelectrodes for voltammetric investigations of the complexation equilibria at very low concentrations of supporting electrolyte allows the risk of competitive complexation or contamination to be avoided, makes the activities of the species involved closer to their concentrations (which facilitates comparisons with the spectroscopic results) and finally, allows the concentrations of the species to be varied over a broader range. This paper presents the calculations of the steady state currents for a wide range of complexes that are inert on the experimental time scale, and reports the influence of the concentration of the electroinactive ionic species on the limiting currents. Also, for a number of cases the variation of halfwave potential with the ligand concentration, resulting from changes in the ohmic drop, is given. It is assumed that only one species (the complex or the uncomplexed form) is electroactive; if this is the complex, it may or may not change the number of ligands. The theoretical results were obtained either employing the Myland-Oldham theory extended in this paper or by digital simulation. The results of calculations show that the magnitude of the changes in the steady-state limiting current on complexation depends on the type of complexation equilibrium, the type of the change in the reactant charge number in the electrode process, and the complex formation constant. In a number of situations migrational effects are negligibly small and no special treatment is necessary, despite the lack of supporting electrolyte. In other cases, where migration is significant, the relations between the measured steady-state limiting current and the complex formation constant beta are given in the form of fitted equations that can be used to obtain beta from appropriate experimental data.
机译:使用微电极在极低浓度的支持电解质上进行伏安法伏安研究时,可以避免竞争性络合或污染的风险,使所涉及物质的活性更接近其浓度(这有助于与光谱结果进行比较)最后,允许该物种的浓度在更大范围内变化。本文介绍了对在实验时间尺度上呈惰性的多种配合物的稳态电流的计算,并报告了电惰性离子种类的浓度对极限电流的影响。而且,在许多情况下,给出了由欧姆降的变化引起的半波电势随配体浓度的变化。假定只有一种(复合形式或非复合形式)是电活性的。如果是复杂的化合物,则可能会或可能不会更改配体的数量。理论结果是通过本文扩展的Myland-Oldham理论或数字仿真获得的。计算结果表明,络合时稳态极限电流的变化幅度取决于络合平衡的类型,电极过程中反应物电荷数变化的类型以及络合物形成常数。在许多情况下,尽管缺少支持电解质,但迁移效果很小,不需要特殊处理。在其他情况下,在迁移显着的情况下,以拟合方程的形式给出了测得的稳态极限电流与复合物形成常数β之间的关系,该方程可用于从适当的实验数据中获得β。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号