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Analysis of the voltammetric response of electroactive guests in the presence of non-electroactive hosts at moderate concentrations

机译:在中等浓度非电活性主体存在下电活性宾的伏安响应分析

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摘要

In this work, we present a method to analyze the voltammetric response of reversible redox systems involving molecules that, bearing m non-interactive electroactive sites, can undergo fast complexation equilibria with host molecules present at concentrations of the same order of magnitude as those of the electroactive guest. The approach focuses on systems for which the relative values of the binding constants for the oxidized and reduced forms of the guest result in the displacement of the voltammetric response of the electroactive molecule as the concentration of the host is increased in the electrolytic solution. This behavior is commonly known as "one wave shift behavior". Based on a series of assumptions, the method allows calculation of all the thermodynamic parameters that describe the electrochemical and complexation equilibria of a given host-guest system. The main strength of the suggested method, however, relies on the fact that it only requires cyclic voltammetry data and that it can be used for systems in which large concentrations of the host can not be employed either due to important changes of the ionic strength or to solubility problems. Although the accuracy of the obtained information is limited by the quality of the data provided by the technique, and by the assumptions employed, it certainly represents an excellent starting point for subsequent refinement either using digital simulations or an independent experimental technique.
机译:在这项工作中,我们提出了一种方法来分析可逆氧化还原系统的伏安响应,该系统涉及带有m个非交互电活性位点的分子,该分子可以与存在浓度与该分子相同的数量级的宿主分子发生快速络合平衡。电动客人。该方法集中于这样的系统,对于该系统,随着主体在电解液中的浓度增加,客体的氧化和还原形式的结合常数的相对值导致电活性分子的伏安响应的位移。这种行为通常被称为“单波行为”。基于一系列假设,该方法可以计算描述给定客体-客体系统的电化学和络合平衡的所有热力学参数。但是,所建议方法的主要优势在于以下事实:该方法仅需要循环伏安法数据,并且可用于其中由于离子强度的重要变化或离子强度的重要变化而无法使用高浓度主体的系统解决溶解度问题。尽管所获得信息的准确性受该技术提供的数据质量以及所采用的假设的限制,但它无疑代表了使用数字仿真或独立实验技术进行后续优化的极佳起点。

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