论文标题

胶束生长的分析模型。 4。离子表面活性剂的蠕虫状胶束的分子热力学:理论与实验

Analytical modeling of micelle growth. 4. Molecular thermodynamics of wormlike micelles from ionic surfactants: theory vs. experiment

论文作者

Danov, K. D., Kralchevsky, P. A., Stanimirova, R. D., Stoyanov, S. D., Cook, J. L., Stott, I. P.

论文摘要

假设:可以预测,可以预测,可以预测,可以预测,可以预测,可以预测,可以预测,可以预测,在离子表面活性剂和盐的溶液中,球形内径(棒状,虫状)胶束的聚集数和长度可以预测物种的分子参数和输入浓度。这可以通过从本系列的前部升级定量分子热力学模型来实现这一目标,并表达胶束sc骨的静电成分,这是球形端盖的过量自由能相对于米奇尔的圆柱形部分。理论:胶束化的热力学扩展到了多组分系统的情况,该系统可能包含几种表面活性剂(离子和非离子化和非离子化)和盐,并考虑到胶束表面上的骨骼层中的反替体结合的影响。此外,考虑因素集中在由单离子表面活性剂加盐组成的系统上。研究结果:从各种浓度的盐和温度下,来自阴离子和阳离子表面活性剂的蠕虫状胶束的理论模型和实验数据之间达到了良好的一致性。根据实验观测值,在高盐浓度下,该模型预测了末端胶囊和圆柱状胶束之间的化学平衡丧失,这意味着向其他人的自组装过渡,例如。分支,形态或结晶和相分离的发作。

Hypotheses: The aggregation number and length of spherocylindrical (rodlike, wormlike) micelles in solutions of an ionic surfactant and salt can be predicted knowing the molecular parameters and the input concentrations of the species. This can be achieved by upgrading the quantitative molecular thermodynamic model from the previous parts of this series with an expression for the electrostatic component of micelle scission energy that is the excess free energy of the spherical endcaps with respect to the cylindrical part of the micelle. Theory: The thermodynamics of micellization is extended to the case of multicomponent system, which may contain several surfactants (both ionic and nonionic) and salts, taking into account the effect of counterion binding in the Stern layer on the micellar surface. Furthermore, the considerations are focused on a system that consists of single ionic surfactant plus salt. Findings: Excellent agreement was achieved between the theoretical model and experimental data for wormlike micelles from anionic and cationic surfactants at various concentrations of salt and temperatures. In accord with the experimental observations, at high salt concentrations, the model predicts loss of chemical equilibrium between the endcaps and cylindrical part of the wormlike micelles, which implies transition to self-assemblies of other, e.g. branched, morphology or the onset of crystallization and phase separation.

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