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Molecular simulations of self-assembly processes of amphiphiles in dilute solutions: The challenge for quantitative modelling

机译:两性分子在稀溶液中自组装过程的分子模拟:定量建模的挑战

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We report on two recent developments in molecular simulations of self-assembly processes of amphiphilic solutions. We focus on the determination of micelle formation of ionic surfactants which exhibit the archetype of self-assembling compounds in solution. The first approach is centred on the challenge in predicting micellisation properties through explicit solvent molecular dynamics simulations. Even with a coarse-grained (CG) approach and the use of highly optimised software packages run on graphics processing unit hardware, it remains in many cases computationally infeasible to directly extract the critical micelle concentration (cmc). However, combined with a recently presented theoretical mean-field model this task becomes resolved. An alternative approach to study self-assembly is through implicit solvent modelling of the surfactants. Here we review some latest results and present new ones regarding capabilities of such a modelling approach in determining the cmc, and the aggregate structures in the dilute regime, that is currently not accessible through explicit solvent simulations, neither through atomistic nor through CG approaches. A special focus is put on surfactant concentration effects and surfactant correlations quantified by scattering intensities that are compared to recently published small-angle X-ray scattering data.
机译:我们报告两亲性溶液的自组装过程的分子模拟中的两个最新进展。我们专注于确定在溶液中表现出自组装化合物原型的离子型表面活性剂的胶束形成。第一种方法集中在通过显式溶剂分子动力学模拟预测胶束化性质方面的挑战。即使采用粗粒度(CG)方法并使用在图形处理单元硬件上运行的高度优化的软件包,在许多情况下,直接提取临界胶束浓度(cmc)在计算上仍然不可行。然而,结合最近提出的理论均场模型,该任务得以解决。研究自组装的另一种方法是通过表面活性剂的隐式溶剂建模。在这里,我们回顾一些最新结果,并提出有关这种建模方法确定cmc的能力的新结果,以及在稀薄状态下的聚集体结构的功能,目前这些方法目前尚无法通过原子溶剂法或CG方法通过显式溶剂模拟获得。特别关注的是表面活性剂浓度效应和表面活性剂的相关性,这些表面活性剂的相关性是通过将散射强度与最近发表的小角度X射线散射数据进行比较来量化的。

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