首页> 外文期刊>Journal of Dispersion Science and Technology >Aggregation Behavior of Surfactants with Different Molecular Structures in Aqueous Solution: DPD Simulation Study
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Aggregation Behavior of Surfactants with Different Molecular Structures in Aqueous Solution: DPD Simulation Study

机译:不同分子结构的表面活性剂在水溶液中的聚集行为:DPD模拟研究

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摘要

The aggregation behavior of surfactants with different molecular structures in aqueous solution was investigated by dissipative particle dynamics (DPD) coarse-grained model simulation. With a simple surfactant model, we investigated how variations in micelle size and structures of surfactants influence their aggregation behavior. The obvious effects on the aggregation properties of surfactants caused by the variation of the hydrophobic or hydrophilic groups and the branch structures were investigated by corresponding structure charts in aqueous solution. The properties such as critical micelle concentration (CMC), cluster size, and density distribution of surfactants were analyzed at the mesoscopic level. Simulation results showed that the CMC value decreases as the length of the hydrophobic tail increases, while the cluster size and the density of tail increase. Conversely, an increase in the size of the head groups was found to enhance the CMC. It is also found that the surfactants with branch in tails are more efficient in forming micelles than linear ones. This is because the stronger excluded volume interactions make branched surfactants require more space at the surface and get more efficient. Additionally, branch in hydrophilic parts, including bola types of surfactant, leads to higher concentration needed to form micelles in aqueous solution and the cluster size are greatly larger than linear ones because of their peculiar structures.
机译:通过耗散粒子动力学(DPD)粗粒模型模拟研究了具有不同分子结构的表面活性剂在水溶液中的聚集行为。使用简单的表面活性剂模型,我们研究了胶束大小和表面活性剂结构的变化如何影响其聚集行为。通过水溶液中相应的结构图研究了疏水或亲水基团和支链结构的变化对表面活性剂聚集性能的明显影响。在介观水平上分析了诸如临界胶束浓度(CMC),簇大小和表面活性剂密度分布等特性。仿真结果表明,随着疏水尾部长度的增加,CMC值减小,而簇的大小和尾部密度增加。相反,发现头部的大小增加可增强CMC。还发现在尾部带有分支的表面活性剂比线性的表面活性剂更有效地形成胶束。这是因为较强的排除体积相互作用使支链表面活性剂在表面上需要更多空间并获得更高的效率。另外,亲水部分中的分支,包括表面活性剂类型,导致在水溶液中形成胶束所需的浓度更高,并且由于其独特的结构,簇的大小比线性的大得多。

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