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Estimating Diffusion Coefficients of Probe Molecules into Polyelectrolyte Brushes by Electrochemical Impedance Spectroscopy

机译:用电化学阻抗谱估算探针分子向聚电解质电刷的扩散系数

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Molecular transport through thin polymer films has become a subject with a variety of challenges and opportunities for chemists, physicists, and material scientists in recent years. The diffusion of probe molecules in and out of macromolecular environments plays a major role in the response of polymer-based sensor materials or the design of time-released drug delivery systems. Obtaining an improved understanding of the relevant dynamic phenomena, like transport of molecular probes, in boundary layers represents a crucial step to develop a clearer picture of the molecular transport processes taking place at interfaces modified with macromolecular assemblies. In this work, we present a new approach based on the derivation of the theoretical impedance transfer function to unambiguously describe the impedance response of gold electrodes modified with poly(methacry-loyloxy)-ethyl-trimethyl-ammonium chloride (PMETAC) brushes. We demonstrate that this methodology not only enables the description of the experimental data but also provides insightful information about the dynamics of the diffusion of probe molecules inside the brush. More important, we show the capabilities of electrochemical impedance spectroscopy to gather information on a molecular transport process inside the brush under experimental conditions in which other electrochemical techniques are no longer applicable. As such, we consider that this experimental approach constitutes a new and powerful tool to estimate diffusion coefficients of probe molecules into interfacial macromolecular assemblies.
机译:近年来,通过聚合物薄膜的分子运输已成为化学家,物理学家和材料科学家面临的众多挑战和机遇的主题。探针分子在大分子环境中的进出扩散在基于聚合物的传感器材料的响应或延时释药系统的设计中起着重要作用。在边界层中获得对相关动态现象(如分子探针的运输)的更好理解,这是关键的一步,可以使人们更清楚地了解在大分子组装体修饰的界面上发生的分子运输过程。在这项工作中,我们提出了一种基于理论阻抗传递函数推导的新方法,以明确描述用聚(甲基丙烯酸-氯氧基)-乙基-三甲基氯化铵(PMETAC)刷修饰的金电极的阻抗响应。我们证明了这种方法不仅能够描述实验数据,而且还可以提供有关刷内探针分子扩散动力学的有见地的信息。更重要的是,我们展示了电化学阻抗谱的功能,可以在不再适用其他电化学技术的实验条件下收集有关刷子内部分子传输过程的信息。因此,我们认为该实验方法构成了一种新的强大工具,可用来估计探针分子向界面大分子组件中的扩散系数。

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