首页> 外文期刊>The Journal of Chemical Physics >ORIENTATIONAL CORRELATIONS AND ENTROPY IN LIQUID WATER [Review]
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ORIENTATIONAL CORRELATIONS AND ENTROPY IN LIQUID WATER [Review]

机译:液态水中的方向相关性和熵[综述]

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The molecular pair correlation function in water is a function of a distance and five angles. It is here separated into the radial distribution function (RDF), which is only a function of distance, and an orientational distribution function (ODF), which is a function of the five angles for each distance between the molecules. While the RDF can be obtained from computer simulations, this is not practical for the ODF due to its high dimensionality. Two approaches for obtaining an approximation to the ODF ate introduced. The first uses a product of one- and two-dimensional marginal distributions from computer simulations, The second uses the gas-phase low-density limit as a reference and applies corrections based on (a) the orientationally averaged interactions in the liquid calculated by simulations, and (b) the observed differences in the one- and two-dimensional marginal distributions in the gas and in the liquid. The site superposition approximation was also tested and found to be inadequate for reproducing the orientationally averaged interaction energy and the angular distributions obtained from the simulations. The two approximations to the pair correlation function are employed to estimate the contribution of two-particle correlations to the excess entropy of TIP4P water. The calculated value is comparable to the excess entropy of TIP4P water estimated by other methods and to the experimental excess entropy of liquid water. More than 90% of the orientational part of the excess entropy is due to correlations between first neighbors. The change in excess entropy with temperature gives a value for the heat capacity that agrees within statistical uncertainty with that obtained from the change in energy with temperature and is reasonably close to the experimental value for water. The effect of pressure on the entropy was examined and it was found that increase in the pressure (density) causes a reduction of orientational correlations, in agreement with the idea of pressure as a ''structure breaker'' in water. The approach described here provides insight concerning the nature of the contributions to the excess entropy of water and should be applicable to other simple molecular fluids. (C) 1996 American Institute of Physics. [References: 101]
机译:水中的分子对相关函数是距离和五个角度的函数。在这里,它分为径向分布函数(RDF)和定向分布函数(ODF),径向分布函数仅是距离的函数,而定向分布函数是相对于分子之间每个距离的五个角度的函数。尽管可以从计算机仿真中获得RDF,但由于ODF尺寸大,因此不可行。介绍了两种获得ODF近似值的方法。第一种使用计算机模拟的一维和二维边际分布的乘积;第二种使用气相低密度极限作为参考,并基于以下条件应用校正:(a)通过模拟计算得出的液体中的取向平均相互作用(b)在气体和液体中的一维和二维边际分布中观察到的差异。还测试了位置叠加近似值,发现该位置叠加值不足以重现从模拟中获得的方向平均的交互作用能量和角度分布。对相关函数的两个近似值用于估计两粒子相关对TIP4P水过量熵的贡献。计算得出的值可与其他方法估算的TIP4P水的过量熵以及液态水的实验过量熵相媲美。过量熵的定向部分的90%以上是由于第一近邻之间的相关性造成的。过量熵随温度的变化给出的热容值在统计不确定性内与从能量随温度变化获得的热容值一致,并且合理地接近于水的实验值。研究了压力对熵的影响,发现压力的增加(密度)会导致取向相关性的降低,这与压力作为水中“结构破坏者”的想法是一致的。此处介绍的方法可提供有关水过多熵贡献性质的见解,并且应适用于其他简单分子流体。 (C)1996年美国物理研究所。 [参考:101]

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