论文标题

一种有效的算法,用于从模拟中对蠕虫状和分支胶束结构进行拓扑表征

An Efficient Algorithm for Topological Characterisation of Worm-Like and Branched Micelle Structures from Simulations

论文作者

Conchuir, Breanndan O, Gardner, Kirk, Jordan, Kirk E., Bray, David J., Anderson, Richard L., Johnston, Michael A., Swope, William C., Harrison, Alex, Sheehy, Donald R., Peters, Thomas J.

论文摘要

许多基于表面活性剂的配方在低浓度下产生理想的粘弹性特性,因此在行业中使用。这些特性是由于存在类似蠕虫的胶束(WLM)所致,因此,了解导致WLM形成的过程引起了重大关注。已经应用了各种实验技术,并在此问题上取得了一定的成功,但是可能会遇到探索关键显微镜特征或特定感兴趣制度的问题。计算机模拟的互补使用可以为访问其结构和动态行为提供替代路线。但是,对于测量粒子模拟中形成的WLM的关键特征的计算方法很少。此外,它们的数学公式受到沿骨干沿曲率锐利或密度波动的WLM的挑战。在这里,我们提出了一种新的拓扑算法,用于在粒子模拟中识别和表征WLMS胶束,该粒子具有理想的数学特性,该属性可以解决以前技术中的短媒介。我们将算法应用于十二烷基硫酸钠(SDS)胶束的情况,以证明如何使用它来构建观察到的结构的全面拓扑表征。

Many surfactant-based formulations are utilised in industry as they produce desirable visco-elastic properties at low-concentrations. These properties are due to the presence of worm-like micelles (WLM) and, as a result, understanding the processes that lead to WLM formation is of significant interest. Various experimental techniques have been applied with some success to this problem but can encounter issues probing key microscopic characteristics or the specific regimes of interest. The complementary use of computer simulations could provide an alternate route to accessing their structural and dynamic behaviour. However, few computational methods exist for measuring key characteristics of WLMs formed in particle simulations. Further, their mathematical formulation are challenged by WLMs with sharp curvature profiles or density fluctuations along the backbone. Here we present a new topological algorithm for identifying and characterising WLMs micelles in particle simulations which has desirable mathematical properties that address short-comings in previous techniques. We apply the algorithm to the case of Sodium dodecyl sulfate (SDS) micelles to demonstrate how it can be used to construct a comprehensive topological characterisation of the observed structures.

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