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首页> 外文期刊>Journal of structural chemistry >Thermodynamic and Structural Characteristics of SPC/E Water at 290 K and under High Pressure
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Thermodynamic and Structural Characteristics of SPC/E Water at 290 K and under High Pressure

机译:290 k和高压下SPC / E水的热力学和结构特性

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摘要

Large SPC/E water models are studied by the Monte Carlo method in a wide range of pressures (1 bar-17.5 kbar) at a temperature of 290 K. Pressure dependences of density, specific heat (c(P)), isothermal compressibility, volumetric thermal expansion coefficient, and dielectric constant of water are calculated. The main structural elements of the coordination shells of water molecules are studied by analysing radial and spatial distribution functions of oxygen and hydrogen atoms. It is suggested to separate the molecules of the first coordination shell into geometrical and topological neighbors of different orders depending on the length of the chain of hydrogen bonds between them. It is shown that most geometrical neighbors are second-order topological neighbors under normal conditions and are mainly higher-order neighbors under higher pressures.
机译:Monte Carlo方法在宽范围的压力(1巴-17.5 kbar)的温度下,在290 K的温度范围内进行大型SPC / E水模型。压力依赖性,比热(C(P)),等温可压缩性, 计算体积热膨胀系数和水的介电常数。 通过分析氧气和氢原子的径向和空间分布函数来研究水分子配位壳的主要结构元素。 建议将第一个协调壳的分子分成不同订单的几何和拓扑邻居,这取决于它们之间的氢键链的长度。 结果表明,大多数几何邻居是正常条件下的二阶拓扑邻居,主要是在更高压力下的高阶邻居。

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