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Segregation in aqueous methanol enhanced by cooling and compression

机译:通过冷却和压缩增强甲醇水溶液中的偏析

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Molecular segregation in methanol-water mixtures is studied across a wide concentration range as a function of temperature and pressure.Cluster distributions obtained from both neutron diffraction and molecular dynamics simulations point to significantly enhanced segregation as the mixtures are cooled or compressed.This evolution toward greater molecular heterogenity in the mixture accounts for the observed changes in the water-water radial distribution function and there are indications also of a change in the topology of the water clusters.The observed behavior is consistent with an approach to an upper critical solution point.Such a point would appear to be "hidden" below the freezing line,thereby precluding observation of the two-fluid region.
机译:研究了甲醇-水混合物在较宽的浓度范围内随温度和压力而发生的分子偏析,通过中子衍射和分子动力学模拟获得的分子团簇分布表明混合物在冷却或压缩时的偏析显着增强。混合物中的分子异质性是观察到的水-水径向分布函数变化的原因,并且也表明水团簇的拓扑结构发生了变化,观察到的行为与达到上限临界解点的方法一致。一个点似乎在冰点以下被“隐藏”,从而排除了对两个流体区域的观察。

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