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Domain Analysis in Nanostructured Liquids: A Post-Molecular Dynamics Study at the Example of Ionic Liquids

机译:纳米结构液体中的畴分析:以离子液体为例的分子后动力学研究

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In the present computational work, we develop a new tool for our trajectory analysis program TRAVIS to analyze the well-known behavior of liquids to separate into microphases. The dissection of the liquid into domains of different subsets, for example, in the case of fluorinated ionic liquids with anionic and cationic head groups (forming together the polar domain), fluorous, and alkyl subsets is followed by radical Voronoi tessellation. This leads to useful average quantities of the subset neighbor count, that is, the domain count that gives the amount of particular domains in the liquid, the domain volume and surface, as well as the isoperimetric quotient, which provides a measure of the deviation of the domains from a spherical shape. Thus, the newly implemented method allows analysis of the domains in terms of their numbers and shapes on a qualitative and also quantitative basis. It is a simple, direct, and automated analysis that does not need evaluation of the structure beforehand in terms of, for example, first solvent shell minima. In the microheterogeneous ionic liquids that we used as examples, the polar subsets always form a single domain in all investigated liquids. Although the fluorous side chains are also more or less connected in one or, maximally, two domains, the alkyl phases are dispersed.
机译:在当前的计算工作中,我们为轨迹分析程序TRAVIS开发了一种新工具,可以分析众所周知的液体行为以分离成微相。将液体分解为不同子集的区域,例如,在带有阴离子和阳离子头基(共同形成极性域),氟和烷基子集的氟化离子液体的情况下,进行自由基Voronoi镶嵌。这将得出有用的子集邻居计数的平均值,即,给出液体中特定域的数量,域体积和表面以及等渗商的域计数,该等商提供了对偏差的度量。球形的域。因此,新实施的方法允许在定性和定量的基础上根据域的数量和形状来分析域。它是一种简单,直接和自动化的分析,不需要事先根据例如第一溶剂壳最小值进行结构评估。在我们用作示例的微非均质离子液体中,极性子集在所有研究的液体中始终形成单个域。尽管氟侧链也或多或少地在一个或最多两个域中连接,但是烷基相是分散的。

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