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Distribution potential in electrified microemulsions with potential determining salts

机译:电源测定盐的带电微乳液中的分布电位

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摘要

The electrical polarization of lamellar and water-in-oil microemulsions composed of the aqueous solution of a potential determining salt (PDS), an organic solvent and a nonionic surfactant has been studied. The distribution of the PDS ions across the interface between two immiscible electrolyte solutions (ITIES) generates an electrical potential difference which can be used to control charge transfer processes. In macroscopic ITIES, this distribution potential is independent of the PDS concentration and can be determined from the electroneutrality condition far from the interface. In microemulsions, on the contrary, the distribution potential is smaller in magnitude and depends on the PDS concentration, the surfactant concentration and, in principle, the micro emulsion (geometrical) structure. This different behaviour appears because the interfacial area per volume is so large that the charge needed to establish the macroscopic distribution potential exceeds the total charge present in the system, and hence large deviations from local electroneutrality occur in the whole microemulsion.
机译:已经研究了由电位确定盐(Pds)的水溶液,有机溶剂和非离子表面活性剂组成的层状物和油内微乳液的电极化。在两个不混溶的电解质溶液(图)之间的界面上的PDS离子的分布产生电电位差,可用于控制电荷转移过程。在宏观概述中,该分布电位独立于PDS浓度,并且可以从远离界面的电力致动力值确定。在微乳液中,相反,分布电位的幅度较小并且取决于PDS浓度,表面活性剂浓度,原则上是微乳液(几何)结构。出现这种不同的行为是因为每个体积的界面面积如此大,即建立宏观分布电位所需的电荷超过系统中存在的总电荷,因此在整个微乳液中发生的较大偏差发生在整个微乳液中。

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