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Efficient Algorithm for the Topological Characterization of Worm-like and Branched Micelle Structures from Simulations

机译:硅胶状和分支胶束结构拓扑表征的高效算法

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Many surfactant-based formulations are utilized in industry as they produce desirable viscoelastic properties at low concentrations. These properties are due to the presence of worm-like micelles (WLMs), 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 behavior. However, few computational methods exist for measuring key characteristics of WLMs formed in particle simulations. Further, their mathematical formulations are challenged by WLMs with sharp curvature profiles or density fluctuations along the backbone. Here, we present a new topological algorithm for identifying and characterizing WLMs in particle simulations, which has desirable mathematical properties that address shortcomings in previous techniques. We apply the algorithm to the case of sodium dodecyl sulfate micelles to demonstrate how it can be used to construct a comprehensive topological characterization of the observed structures.
机译:在工业中使用了许多基于表面活性剂的制剂,因为它们在低浓度下产生所需的粘弹性。这些性质是由于存在蠕虫状胶束(WLMS),因此了解导致WLM形成的过程具有重要兴趣。已经取得了各种实验技术,对这个问题取得了一些成功,但可以遇到探测关键显微特征或感兴趣的特定制度的问题。电脑仿真的互补使用可以提供访问其结构和动态行为的替代路由。然而,用于测量在粒子模拟中形成的WLM的关键特性存在很少的计算方法。此外,它们的数学制剂由WLM挑战,具有尖锐的曲率曲线或沿骨架的密度波动。在这里,我们提出了一种新的拓扑算法,用于识别和表征粒子仿真中的WLMS,这具有所需的数学属性,可以解决以前的技术中的缺点。我们将该算法应用于十二烷基硫酸钠胶束的情况下,以证明如何使用它来构建观察到的结构的综合拓扑表征。

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