首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-assembly of ionic surfactant in cross-linked polyelectrolyte gel of opposite charge. A physical model for highly charged systems
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Self-assembly of ionic surfactant in cross-linked polyelectrolyte gel of opposite charge. A physical model for highly charged systems

机译:离子型表面活性剂在带相反电荷的交联聚电解质凝胶中的自组装。高电荷系统的物理模型

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A physical model is presented for the self-assembly of ionic surfactants in oppositely charged polyelectrolyte gels. The basic idea is that the formation of a micelle in an initially water-swelled gel is accompanied by a collapse of the surrounding polyion chains resulting in the formation of a complex. The strong electrostatic interaction between the micelle and the highly charged polyion produces a short-range perturbation of the gel structure in the vicinity of the micelle, leaving the complex-free regions of the gel essentially unchanged. With a fixed volume of the complex and a fixed stoichiometry of the surfactant and the polyion in the complex, a linear change in the gel volume is predicted as a function of the number of micelles in the gel. Experiments with dodecyltrimethylammonium bromide in cross-linked sodium polyacrylate support this for weakly cross-linked gels, but deviations are found at higher cross-linking densities.The distribution of the surfactant between gels and equilibrium aqueous phases is investigated and presented as binding isotherms. It is found that prior to micelle formation the surfactant binding can be described as an exchange of sodium ions in the gel with a preferential binding of the sodium ion (Delta G degrees: 1-2 RT/mol). Cooperative binding is observed when the surfactant concentration in the gels exceeds the critical aggregation concentration in solutions of linear polyacrylate of the corresponding polyelectrolyte concentration. The details of the cooperative part of the binding isotherm are investigated by means of a simple law of mass action analysis. It is found that a pronounced effect of small additions of salt is well described at moderate degrees of surfactant binding to the gels. The abrupt reduction of the cooperativity at high degrees of binding is found to coincide with the gels reaching their fully collapsed state, which is characterized by an ordered packing of the complexes. At this point each micelle is surrounded by an excess of polyelectrolyte units. [References: 54]
机译:提出了一种物理模型,用于在带相反电荷的聚电解质凝胶中自组装离子型表面活性剂。基本思想是,在最初水溶胀的凝胶中形成胶束时,周围的聚离子链会塌陷,从而形成复合物。胶束和高度带电的聚离子之间的强静电相互作用在胶束附近产生凝胶结构的短程扰动,而凝胶的无复合物区域基本上保持不变。使用固定体积的复合物和固定的表面活性剂和复合物中的聚离子的化学计量,可以预测凝胶体积的线性变化是凝胶中胶束数量的函数。用十二烷基三甲基溴化铵在交联聚丙烯酸钠中进行的实验支持了弱交联凝胶的这一点,但在较高的交联密度下发现了偏差。研究了表面活性剂在凝胶与平衡水相之间的分布,并表示为结合等温线。发现在胶束形成之前,表面活性剂结合可以描述为凝胶中钠离子的交换与钠离子的优先结合(ΔG度:1-2RT / mol)。当凝胶中的表面活性剂浓度超过相应聚电解质浓度的线性聚丙烯酸酯溶液中的临界聚集浓度时,观察到协同结合。结合等温线的合作部分的细节是通过简单的质量作用定律进行研究的。发现在适度程度的表面活性剂与凝胶结合时,很好地描述了少量添加盐的显着效果。发现在高结合度下协同性突然降低与凝胶达到其完全塌陷状态相一致,其特征在于复合物的有序堆积。此时,每个胶束被过量的聚电解质单元包围。 [参考:54]

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