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Dissipative particle dynamics simulation for the effect of interaction on the self- assembly behaviours of heterogemini surfactant in aqueous solution

机译:相互作用对杂双子表面活性剂在水溶液中自组装行为影响的耗散粒子动力学模拟

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Self-assembly behaviours of heterogemini surfactant in aqueous solution have been explored by means of dissipative particle dynamics simulation. Five kinds of heterogemini molecules are involved and a variety of novel morphologies have been obtained. Results based on detailed analyses show that head-tail and tail-water interactions play different roles in the formation of six kinds of self-assembly morphologies. The key factors are tail-water and head-tail repulsions separately for morphology with small (sphere) and relatively large scales (rod, planar grid, lamella and tunnels). Besides, the appearance of network in only one system can be regarded as a particular type of intermediate state. Coexistence of several sphere micelles in an amplified dissipative particle dynamics system gives us a better understanding of interactions inside the soft matter. Our simulation results can provide a theoretical guide to further research towards self-assembly behaviours of heterogemini surfactants and practical applications of these matters.
机译:通过耗散粒子动力学模拟研究了杂双子表面活性剂在水溶液中的自组装行为。涉及五种异质双子分子,并且已经获得了多种新颖的形态。基于详细分析的结果表明,头尾和尾水之间的相互作用在六种自组装形态的形成中起着不同的作用。关键因素是尾部和尾部的排斥力,分别用于较小(球形)和较大比例(杆,平面网格,薄板和隧道)的形貌。此外,仅在一个系统中出现的网络就可以被视为特定类型的中间状态。放大的耗散粒子动力学系统中多个球形胶束的共存使我们对软物质内部的相互作用有了更好的了解。我们的模拟结果可以为进一步研究杂双子表面活性剂的自组装行为及其实际应用提供理论指导。

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