首页> 外文期刊>The Journal of Chemical Physics >Hydrogen bond and residence dynamics of ion-water and water-water pairs in supercritical aqueous ionic solutions: Dependence on ion size and density
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Hydrogen bond and residence dynamics of ion-water and water-water pairs in supercritical aqueous ionic solutions: Dependence on ion size and density

机译:离子水和水-水对在超临界离子水溶液中的氢键和驻留动力学:取决于离子的大小和密度

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We have carried out a series of molecular dynamics simulations to investigate the hydrogen bond and residence dynamics of X--water (X=F, Cl, and I) and pairs in aqueous solutions at a temperature of 673 K. The calculations are done at six different water densities ranging from 1.0 to 0.15 g cm(-3). The hydrogen bonds are defined by using a set of configurational criteria with respect to the anion(oxygen)-oxygen and anion(oxygen)-hydrogen distances and the anion(oxygen)-oxygen-hydrogen angle for an anion(water)-water pair. The F--water hydrogen bonds are found to have a longer lifetime than all other hydrogen bonds considered in the present study. The lifetime of Cl--water hydrogen bonds is shorter than that of F--water hydrogen bonds but longer than the lifetime of water-water hydrogen bonds. The lifetimes of I--water and water-water hydrogen bonds are found to be very similar. Generally, the lifetimes of both anion-water and water-water hydrogen bonds are found to be significantly shorter than those found under ambient conditions. In addition to hydrogen bond lifetimes, we have also calculated the residence times and the orientational relaxation times of water molecules in ion(water) hydration shells and have discussed the correlations of these dynamical quantities with the observed dynamics of anion(water)-water hydrogen bonds as functions of the ion size and density of the supercritical solutions. (c) 2006 American Institute of Physics.
机译:我们进行了一系列分子动力学模拟,以研究673 K温度下X--水(X = F,Cl和I)及其对在水溶液中的氢键和驻留动力学。六种不同的水密度,范围从1.0到0.15 g cm(-3)。通过使用一组关于阴离子(水)-水对的阴离子(氧)-氧和阴离子(氧)-氢距离以及阴离子(氧)-氧-氢角的构型标准来定义氢键。发现F--水氢键的寿命比本研究中考虑的所有其他氢键更长。 Cl-水氢键的寿命短于F-水氢键的寿命,但长于水-水氢键的寿命。发现I--水和水-水氢键的寿命非常相似。通常,发现阴离子-水和水-水氢键的寿命都明显短于在环境条件下发现的寿命。除氢键寿命外,我们还计算了离子(水)水化壳中水分子的停留时间和取向弛豫时间,并讨论了这些动力学量与阴离子(水)-水氢动力学的相关性。键与超临界溶液的离子大小和密度有关。 (c)2006年美国物理研究所。

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