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胶束化和混合非离子/离子胶束系统中的分配平衡:分子模型预测。

Micellization and Partition Equilibria in Mixed Nonionic/Ionic Micellar Systems: Predictions with Molecular Models.

机构信息

Hamburg University of Technology , Institute of Thermal Separation Processes, Eissendorfer Str. 38, 21073 Hamburg, Germany.

出版信息

Langmuir. 2017 Oct 31;33(43):12306-12316. doi: 10.1021/acs.langmuir.7b02813. Epub 2017 Oct 13.

Abstract

In practical applications, surfactant solutions are mostly used in mixtures of nonionic and ionic surfactants because they have improved characteristics compared to those of single surfactant solutions. By adjusting the composition of the micelles and the pH value, the solubilization of solutes can be enhanced. Nevertheless, the partitioning of solutes between nonionic/ionic mixed micelles and the aqueous phase is studied to a much lesser extent than for single surfactant solutions. Theoretical methods to predict partition equilibria in mixed micelles are of interest for screening studies. For those, the composition of the mixed micelle has to be known. Here we investigate mixtures of TX-114 (Triton X-114), Brij35 (C12E23), SDS (sodium dodecyl sulfate), and CTAB (cetyltrimethylammonium bromide). First, to investigate the surfactant compositions in the micelles, molecular dynamics (MD) self-assembly simulations were applied. Thereafter, the predictive COSMO-RS model, which applies the pseudophase approach, and its extension to anisotropic systems termed COSMOmic were compared for the prediction of partition equilibria in mixed micelles, where various molar ratios of the surfactants were considered. It could be demonstrated that both methods are applicable and lead to reasonable predictions for neutral molecules. However, taking into account the three-dimensional structure of the micelle is beneficial because the calculations with COSMOmic are in better agreement with experimental results. Because the partitioning behavior of ionizable molecules in mixed micelles is of particular interest, the partitioning of ionized isovanillin in mixed Brij35/CTAB micelles at different micelle compositions was calculated with COSMOmic. Using a thermodynamic cycle, the position-dependent pK of isovanillin within the micelle is calculated on the basis of COSMOmic free energy profiles. As a result, the protolytic equilibrium of isovanillin within the micelles can be taken into account, which is crucial for the reliable prediction of partition coefficients.

摘要

在实际应用中,表面活性剂溶液大多以非离子和离子表面活性剂的混合物形式使用,因为它们与单一表面活性剂溶液相比具有改善的特性。通过调节胶束的组成和 pH 值,可以增强溶质的增溶作用。然而,与单一表面活性剂溶液相比,对溶质在非离子/离子混合胶束与水相之间的分配的研究要少得多。预测混合胶束中分配平衡的理论方法对于筛选研究很有意义。对于这些方法,必须知道混合胶束的组成。在这里,我们研究了 TX-114(曲通 X-114)、Brij35(C12E23)、SDS(十二烷基硫酸钠)和 CTAB(十六烷基三甲基溴化铵)的混合物。首先,为了研究胶束中的表面活性剂组成,应用了分子动力学(MD)自组装模拟。此后,将应用赝相方法的预测性 COSMO-RS 模型及其扩展到各向异性体系的 COSMOmic 进行了比较,以预测混合胶束中的分配平衡,其中考虑了不同摩尔比的表面活性剂。结果表明,这两种方法都是适用的,并且可以对中性分子进行合理的预测。然而,考虑到胶束的三维结构是有益的,因为 COSMOmic 的计算与实验结果更吻合。由于混合胶束中可电离分子的分配行为特别有趣,因此用 COSMOmic 计算了不同胶束组成下电离的异香草醛在混合 Brij35/CTAB 胶束中的分配。基于 COSMOmic 自由能曲线,通过热力学循环计算异香草醛在胶束中的位置相关的 pK 值。因此,可以考虑异香草醛在胶束中的质子化平衡,这对于可靠预测分配系数至关重要。

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