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Counterion condensation and release in micellar solutions

机译:抗衡离子在胶束溶液中的凝聚和释放

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Counterion condensation and release in micellar solutions are investigated by direct measurement of counterion concentration with ion-selective electrode. Monte Carlo simulations based on the cell model are also performed to analyze the experimental results. The degree of counterion condensation is indicated by the concentration ratio of counterions in the bulk to the total ionic surfactant added, alpha <= 1. The ionic surfactant is completely dissociated below the critical micelle concentration (cmc). However, as cmc is exceeded, the free counterion ratio alpha declines with increasing the surfactant concentration and approaches an asymptotic value owing to counterion condensation to the surface of the highly charged micelles. Micelle formation leads to much stronger electrostatic attraction between the counterion and the highly charged sphere in comparison to the attraction of single surfactant ion with its counterion. A simple model is developed to obtain the true degree of ionization, which agrees with our Monte Carlo results. Upon addition of neutral polymer or monovalent salts, some of the surfactant counterions are released to the bulk. The former is due to the decrease of the intrinsic charge (smaller aggregation number) and the degree of ionization is increased. The latter is attributed to competitive counterion condensation, which follows the Hefmeister series. This consequence indicates that the specific ion effect plays an important role next to the electrostatic attraction. (C) 2005 American Institute of Physics.
机译:通过直接用离子选择电极测量抗衡离子浓度来研究抗衡离子在胶束溶液中的冷凝和释放。还基于单元模型进行了蒙特卡洛模拟,以分析实验结果。抗衡离子的缩合程度由本体中抗衡离子与所添加的总离子表面活性剂的浓度比(α<= 1)指示。离子表面活性剂在临界胶束浓度(cmc)以下完全分解。然而,当超过cmc时,由于抗衡离子缩合到高度带电的胶束表面,游离抗衡离子比率α随着表面活性剂浓度的增加而下降并且接近渐近值。与单个表面活性剂离子及其抗衡离子的吸引力相比,胶束的形成导致抗衡离子与高电荷球之间的静电吸引力强得多。开发了一个简单的模型来获得真实的电离度,这与我们的蒙特卡洛结果一致。加入中性聚合物或一价盐后,一些表面活性剂抗衡离子释放到主体中。前者是由于本征电荷的减少(较小的聚集数)和电离度增加而引起的。后者归因于竞争性的抗衡离子凝结,它遵循Hefmeister系列。该结果表明,特定的离子效应在静电吸引之后起着重要的作用。 (C)2005美国物理研究所。

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