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首页> 外文期刊>The Journal of Chemical Physics >Instantaneous normal mode analysis of orientational motions in liquid water:Local structural effects
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Instantaneous normal mode analysis of orientational motions in liquid water:Local structural effects

机译:液态水中定向运动的瞬时正态分析:局部结构效应

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We have investigated the effects of local structures on the orientational motions in liquid water in terms of the instantaneous normal mode (INM) analysis.The local structures of a molecule in liquid water are characterized by two different kinds of index:the asphericity parameter of its Voronoi polyhedron and the numbers of the H bonds donated and accepted by the molecule.According to the two kinds of index,the molecules in the simulated water are classified into subensembles,for which the rotational contributions to the INM spectrum are calculated.Our results indicate that by increasing the asphericity,the rotational contribution has a shift toward the high-frequency end in the real spectrum and a decrease in the fraction of the imaginary modes.Furthermore,we find that this shift essentially relies on the number of the donated H bonds of a molecule,but has almost nothing to do with that of the accepted H bonds.The local structural effects resulting from the geometry of water molecule are also discussed.
机译:我们通过瞬时法向模态(INM)分析研究了局部结构对液态水中定向运动的影响。液态水中分子的局部结构具有两种不同的指标:其非球性参数Voronoi多面体和分子给定和接受的H键数。根据两种指标,将模拟水中的分子分类为子集合,并计算其对INM光谱的旋转贡献。我们的结果表明通过增加非球面度,旋转贡献向真实频谱中的高频端偏移,并且虚模部分减小。此外,我们发现这种偏移主要取决于捐赠的H键的数量分子,但几乎与公认的氢键无关。水分子的几何结构引起的局部结构效应也进行了讨论。

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