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用甲苯酸对 CTAB 溶液中 pH 诱导的结构转变进行计算研究。

Computational Investigations of a pH-Induced Structural Transition in a CTAB Solution with Toluic Acid.

机构信息

Technology Inspection Center, Shengli Oilfield Company, SINOPEC, Dongying 257000, China.

School of Pharmaceutical Sciences, Liaocheng University, Liaocheng 252059, China.

出版信息

Molecules. 2021 Nov 19;26(22):6978. doi: 10.3390/molecules26226978.

Abstract

In this work, molecular dynamics simulations were performed to study the pH-induced structural transitions for a CTAB/-toluic acid solution. Spherical and cylindrical micelles were obtained for aqueous surfactants at pH 2 and 7, respectively, which agrees well with the experimental observations. The structural properties of two different micelles were analyzed through the density distributions of components and the molecular orientations of CTA and toluic acid inside the micelles. It was found that the bonding interactions between CTA and toluic in spherical and cylindrical micelles are very different. Almost all the ionized toluic acid (PTA) in the solution at pH 7 was solubilized into the micelles, and it was located in the CTA headgroups region. Additionally, the bonding between surfactant CTA and PTA was very tight due to the electrostatic interactions. The PTA that penetrated into the micelles effectively screened the electrostatic repulsion among the cationic headgroups, which is considered to be crucial for maintaining the cylindrical micellar shape. As the pH decreased, the carboxyl groups were protonated. The hydration ability of neutral carboxyl groups weakened, resulting in deeper penetration into the micelles. Meanwhile, their bonding interactions with surfactant headgroups also weakened. Accompanied by the strengthen of electrostatic repulsion among the positive headgroups, the cylindrical micelle was broken into spherical micelles. Our work provided an atomic-level insights into the mechanism of pH-induced structural transitions of a CTAB/-toluic solution, which is expected to be useful for further understanding the aggregate behavior of mixed cationic surfactants and aromatic acids.

摘要

在这项工作中,我们进行了分子动力学模拟,以研究 CTAB/-甲苯酸溶液在 pH 值变化下的结构转变。在 pH 值为 2 和 7 时,分别得到了水溶液中表面活性剂的球形和圆柱形胶束,这与实验观察结果非常吻合。通过组分的密度分布和胶束内 CTA 和甲苯酸的分子取向,分析了两种不同胶束的结构特性。结果表明,球形和圆柱形胶束中 CTA 和甲苯酸之间的键合相互作用非常不同。在 pH 值为 7 的溶液中几乎所有的离子化甲苯酸(PTA)都被溶解在胶束中,并且位于 CTA 头基区域。此外,由于静电相互作用,表面活性剂 CTA 和 PTA 之间的键合非常紧密。进入胶束的 PTA 有效地屏蔽了阳离子头基之间的静电排斥,这对于维持圆柱形胶束形状至关重要。随着 pH 值的降低,羧基被质子化。中性羧基的水合能力减弱,导致更深地渗透到胶束中。同时,它们与表面活性剂头基的键合相互作用也减弱了。伴随着正电荷头基之间静电排斥的增强,圆柱形胶束被破坏成球形胶束。我们的工作提供了对 CTAB/-甲苯酸溶液 pH 值诱导结构转变机制的原子水平的深入了解,这有望有助于进一步理解混合阳离子表面活性剂和芳香酸的聚集行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbca/8619028/e2c470923c43/molecules-26-06978-g001.jpg

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