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Hydrophobic solvation of Gay-Berne particles in modified water models

机译:改良水模型中盖伊-伯恩粒子的疏水溶剂化

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The solvation of large hydrophobic solutes, modeled as repulsive and attractive Gay-Berne oblate ellipsoids, is characterized in several modified water liquids using the SPC/E model as the reference water fluid. We find that small amounts of attraction between the Gay-Berne particle and any model fluid result in wetting of the hydrophobic surface. However, significant differences are found among the modified and SPC/E water models and the critical distances in which they dewet the hydrophobic surfaces of pairs of repulsive Gay-Berne particles. We find that the dewetting trends for repulsive Gay-Berne particles in the various model liquids correlate directly with their surface tensions, the widths of the interfaces they form, and the openness of their network structure. The largest critical separations are found in liquids with the smallest surface tensions and the broadest interfaces as measured by the Egelstaff-Widom length. (c) 2008 American Institute of Physics.
机译:使用SPC / E模型作为参考水流体,在几种改良的水液体中,对建模为排斥性和吸引力的盖伊-伯恩扁球形椭球体的疏水性大的溶质进行了溶剂化。我们发现,盖伊-伯恩粒子与任何模型流体之间的少量吸引力会导致疏水表面变湿。但是,在修改后的水模型和SPC / E水模型之间以及它们对一对排斥的Gay-Berne颗粒的疏水表面进行润湿的临界距离之间发现了显着差异。我们发现,各种模型液体中斥责的盖伊-伯恩粒子的去湿趋势与它们的表面张力,形成的界面宽度以及其网络结构的开放度直接相关。根据埃格尔斯塔夫-维多姆(Egelstaff-Widom)长度测量,在具有最小表面张力和最宽界面的液体中发现了最大的临界分离。 (c)2008年美国物理研究所。

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