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On similarity of hydrogen-bonded networks in liquid formamide andwater as revealed in the static dielectric studies

机译:静态介电研究显示液态甲酰胺和水中氢键网络的相似性

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The paper presents the experimental verification of the result obtained with the molecular dynamics simulation which revealed the differences in the topology of the hydrogen-bonded networks in liquid formamide and water, namely, the differences in their intermolecular cyclization process (I. Bako, et al. J. Chem. Phys. 2010, 132, 014506). It is shown in our paper that the difference in the (simulated) size distribution of the hydrogen-bonded molecular rings in water (a relatively sharp maximum at about 6 molecules) and formamide (a broad maximum at about 11 molecules) strongly manifests itself in the experimental values of the Kirkwood correlation factor of the compounds. A much larger number of molecules included in the cyclic species (of more or less compensated dipole moment) leads to significant decrease of the Kirkwood correlation factor of formamide in comparison to that of water. Besides, as a consequence of an enhancement in formation of the cyclic multimers of formamide, one observes an essential reduction of the orientational entropy increment of that liquid, in comparison to the entropy effect related to liquid amides where the chain multimers are formed.
机译:本文对通过分子动力学模拟获得的结果进行了实验验证,结果揭示了液态甲酰胺和水中氢键网络拓扑结构的差异,即分子间环化过程的差异(I.Bako等J.Chem.Phys.2010,132,014506)。我们的论文表明,水中的氢键合分子环(模拟的)尺寸分布(在大约6个分子时有一个相对较大的最大值)和甲酰胺(大约11个分子时有一个较大的最大值)之间的(模拟)尺寸分布差异强烈地体现在化合物的柯克伍德相关因子的实验值。与水相比,包含在环状物质中(或多或少经补偿的偶极矩)的分子数量大得多,导致甲酰胺的柯克伍德相关因子显着降低。此外,由于提高了甲酰胺环状多聚体的形成的结果,与形成链多聚体的液体酰胺有关的熵效应相比,人们观察到该液体的定向熵增量的本质降低。

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