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首页> 外文期刊>Journal of Molecular Liquids >Molecular dynamics study of the structure of anionic SDS, cationic DTAC, zwitterionic DDAO, and nonionic C12E8 spherical micelles in solution
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Molecular dynamics study of the structure of anionic SDS, cationic DTAC, zwitterionic DDAO, and nonionic C12E8 spherical micelles in solution

机译:溶液中阴离子SDS,阳离子DTAC,两性离子DDAO和非离子C12E8球形胶束结构的分子动力学研究

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摘要

Molecular dynamics calculations for anionic SOS, cationic DTAC, zwitterionic DDAO, nonionic C12E8 micelles, and dodecane droplets as a reference, were carried out in order to obtain the relation between the head group charges and structure of the micelle. The radial density profile of the carbon atom of hydrophobic tail shows a low-density region at the micelle center, where small hydrophobic solutes may be solubilized. This is commonly found among the micelles investigated in the present study. This indicates that the deep part of the micelle core is not influenced by the head group charges. In contrast, structure of surface of the hydrophobic core of the micelles is strongly influenced by the head groups. Fluctuation of the surface of the ionic SDS micelle is restricted by the strong Coulombic interaction between the charges of the sulfate groups and counter sodium ions. In the other micelles, this effect disappears so that a large fluctuation occurs on the micelle surface. The volume of solvent water decreases when the ionic SDS and DTAC micelles dissolved into water. Because of the strong electrostatic field around the micelle, orientation of water molecules has strong correlations with the micelles. Then, the tetrahedral water structure breaks. In particular, the density increases around the SDS micelles because of the strong attraction toward the sulfate groups. Thus, the volume shrinkage occurs. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了获得头基电荷与胶束结构之间的关系,对阴离子SOS,阳离子DTAC,两性离子DDAO,非离子C12E8胶束和十二烷液滴的分子动力学计算进行了计算。疏水尾部碳原子的径向密度分布在胶束中心处显示一个低密度区域,在此处可以溶解少量疏水溶质。这在本研究中研究的胶束中很常见。这表明胶束核心的深部不受头基电荷的影响。相反,胶束的疏水核的表面结构受头部基团的强烈影响。离子SDS胶束表面的波动受到硫酸盐基团电荷与抗钠离子之间强烈的库仑相互作用的限制。在其他胶束中,这种作用消失了,因此在胶束表面上发生了很大的波动。当离子SDS和DTAC胶束溶解在水中时,溶剂水的体积会减少。由于胶束周围的强静电场,水分子的取向与胶束有很强的相关性。然后,四面体水结构破裂。特别是,由于对硫酸根的强烈吸引,SDS胶束周围的密度增加。因此,发生体积收缩。 (C)2015 Elsevier B.V.保留所有权利。

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