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Molecular Dynamics Simulations of Micellization of Alkyl Ethoxylate

机译:烷基乙氧基化物胶束化的分子动力学模拟

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Micellization of the non-ionic surfactants alkyl ethoxylate (poly oxyethylene alcohols C_(12)H_(25)(OC2H4)4OH) has been studied using atomistic explicit-solvent molecular dynamics simulations. The simulations were carried out in a wide range of surfactant concentrations (ca. 0.05 M-0.9 M) above the critical micelle concentration. An analysis of the number of cluster formed with time showed that all the system studied aggregated into a small number of clusters rapidly within about 200 ps and then the clusters aggregated into a spherical type micelle (in most of the cases) in about 1 ns. Various system properties are analyzed to predict trends with variation of concentration, chain lengths, etc. It is observed that variation of chain lengtlis (both polar as well as non-polar part) has a significant influence in the system properties. The implicit-solvent molecular dynamics study of the same system with dielectric constants 80 and 30 indicated that implicit-solvent model is not able to capture the phenomena of micellization properly.
机译:非离子表面活性剂烷基乙氧基化物(聚氧乙烯醇C_(12)H_(25)(OC2H4)4OH)的胶束化已使用原子显式溶剂分子动力学模拟进行了研究。在临界胶束浓度以上的多种表面活性剂浓度(约0.05 M-0.9 M)中进行了模拟。对随时间形成的簇数的分析表明,所有研究的系统在大约200 ps内迅速聚集为少量簇,然后在大约1 ns内将簇聚集为球形胶束(在大多数情况下)。分析了各种系统特性,以预测浓度,链长等变化的趋势。观察到,链长链(极性和非极性部分)的变化都会对系统性能产生重大影响。对具有介电常数80和30的同一系统的隐式溶剂分子动力学研究表明,隐式溶剂模型无法正确捕获胶束化现象。

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