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A geometric model for cold water and liquid-liquid transitions

机译:冷水和液-液转变的几何模型

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Water is an associated liquid in which the main intermolecular interaction is the hydrogen bond (HB) which is limited to four per atom, independently of the number of neighbors. We have considered a hydrogen bond net superposed on Bernal's geometric model for liquids, which allows for different local environments for the liquid particles. In this study, a mean-field treatment of the two-dimensional version of the model is discussed. Under pressure the model exhibits three phases of different densities and a coexistence line ending in a critical point between low and high density phases. Entropy of the HB network plays an essential role in defining the slope of the coexistence line. The model behavior might be of interest in describing supercooled water and liquid-liquid transitions of other substances.
机译:水是一种伴生液体,其中主要的分子间相互作用是氢键 (HB),每个原子限制为四个,与相邻原子的数量无关。我们考虑了叠加在Bernal的液体几何模型上的氢键网络,它允许液体颗粒的不同局部环境。在这项研究中,讨论了模型二维版本的平均场处理。在压力下,该模型表现出三个不同密度的相和一条共存线,终止于低密度相和高密度相之间的临界点。HB网络的熵在定义共存线的斜率方面起着至关重要的作用。该模型行为可能有助于描述过冷水和其他物质的液-液转变。

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