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Monte Carlo simulation of the nonadditive restricted primitive model of ionic fluids: Phase diagram and clustering

机译:离子液体非加性受限原始模型的蒙特卡洛模拟:相图和聚类

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摘要

We report an accurate Monte Carlo calculation of the phase diagram and clustering properties of the restricted primitive model with nonadditive hard-sphere diameters. At high density the positively nonadditive fluid shows more clustering than in the additive model and the negatively nonadditive fluid shows less clustering than in the additive model; at low density the reverse scenario appears. A negative nonadditivity tends to favor the formation of neutrally charged clusters starting from the dipole. A positive nonadditivity favors the pairing of like ions at high density. The critical point of the gas-liquid phase transitionmoves at higher temperatures and higher densitiesfor a negative nonadditivity and at lower temperatures and lower densities for a positive nonadditivity. The law of corresponding states does not seem to hold strictly. Our results can be used to interpret recent experimental works on room temperature ionic liquids.
机译:我们报告了相图的精确蒙特卡罗计算和具有非累加硬球直径的受限原始模型的聚类性质。在高密度下,与添加剂模型相比,正非添加剂流体显示出更多的聚类,而与添加剂模型相比,负非添加剂流体显示出更少的聚类。在低密度时,出现相反的情况。负的非可加性倾向于促进从偶极子开始形成中性电荷的团簇。正非加性有利于高密度的类似离子配对。气-液相转变的临界点在较高的温度和较高的密度下产生负的非可加性,而在较低的温度和较低的密度下产生阳性的不加性。相应州的法律似乎并不严格。我们的结果可用于解释有关室温离子液体的最新实验工作。

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