论文标题

核液相位的水/甲醇混合物的液体液相变过的竞争相互作用

Competing interactions near the liquid-liquid phase transition of core-softened water/methanol mixtures

论文作者

Marques, Murilo S., Hernandes, Vinicius Fonseca, Lomba, Enrique, Bordin, J. Rafael

论文摘要

水是一种独特的材料,具有一长串热力学,动态和结构异常,通常归因于分子间相互作用中两个特征长度尺度之间的竞争。有人认为,以液体液体临界点(LLCP)结尾的潜在液态液相变(LLPT)位于水的异常行为的核心。在多个仿真研究中证明的这种过渡似乎通过自发结晶而实验地抢占了。在这里,为了揭露在LLPT附近的超冷方案中观察到的自发结晶与密度异常之间的联系,我们对核心软化水和甲醇的模型混合物进行了广泛的分子动力学模拟。纯水状的流体表现出LLPT和密度异常。相反,我们的纯甲醇样模型确实具有LLPT,但缺乏密度异常。我们的结果说明了密度异常的消失与自发结晶温度的升高之间的关系:一旦该温度超过LLCP临界温度,就不会观察到密度异常。这个特殊的特征说明了如何微调竞争相互作用来决定水/酒精混合物的异常行为。

Water is an unique material with a long list of thermodynamic, dynamic and structural anomalies, which are usually attributed to the competition between two characteristic length scales in the intermolecular interaction. It has been argued that a potential liquid-liquid phase transition (LLPT) ending at a liquid-liquid critical point (LLCP) lies at the core of the anomalous behavior of water. This transition which has been evidenced in multiple simulation studies seems to be preempted experimentally by spontaneous crystallization. Here, in order to expose the connection between the spontaneous crystallization observed in the supercooled regime in the vicinity of the LLPT, and the density anomaly, we perform extensive Molecular Dynamics simulations of a model mixture of core-softened water and methanol. The pure water-like fluid exhibits a LLPT and a density anomaly. In contrast, our pure methanol-like model does have a LLPT but lacks the density anomaly. Our results illustrate the relation between the vanishing of the density anomaly and an increase in the temperature of the spontaneous crystallization: once this temperature surpasses the LLCP critical temperature, no density anomaly is observed. This peculiar feature illustrates how fine tuning the competitive interactions determine the anomalous behavior of water/alcohol mixtures.

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