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水溶液中卤离子 - 水氢键的动力学:取决于离子大小和温度。

Dynamics of halide ion-water hydrogen bonds in aqueous solutions: dependence on ion size and temperature.

作者信息

Chowdhuri Snehasis, Chandra Amalendu

机构信息

Department of Chemistry, Indian Institute of Technology, Kanpur, India 208016.

出版信息

J Phys Chem B. 2006 May 18;110(19):9674-80. doi: 10.1021/jp057544d.

Abstract

We have carried out a series of molecular dynamics simulations to investigate the dynamics of X(-)-water (X = F, Cl, Br, and I) and water-water hydrogen bonds in aqueous alkali halide solutions at room temperature and also of Cl(-)-water and water-water hydrogen bonds at seven different temperatures ranging from 238 to 318 K. 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 results of the hydrogen bond dynamics are obtained for two different cutoff values for the angular criterion. In both cases, similar dynamical behavior of the hydrogen bonds is found with respect to their dependence on ion size and temperature. The fluoride ion-water hydrogen bonds are found to break at a much slower rate than water-water hydrogen bonds, while the lifetimes of chloride and bromide ion-water hydrogen bonds are found to be shorter than those of fluoride ion-water ones but still longer than water-water hydrogen bonds. The short-time dynamics of iodide ion-water hydrogen bonds is found to be slightly faster, while its long-time dynamics is found to be slightly slower than the corresponding water-water hydrogen bond dynamics. Correlations of the observed dynamics of anion(water)-water hydrogen bonds with those of rotational and translational diffusion and residence times of water molecules in ion(water) hydration shells are also discussed. With variation of temperature, the lifetimes of both Cl(-)-water and water-water hydrogen bonds are found to show Arrhenius behavior with a slightly higher activation energy for the Cl(-)-water hydrogen bonds.

摘要

我们进行了一系列分子动力学模拟,以研究室温下碱金属卤化物水溶液中X⁻-水(X = F、Cl、Br和I)以及水-水氢键的动力学,还研究了在238至318 K范围内七个不同温度下Cl⁻-水和水-水氢键的动力学。通过使用一组关于阴离子(氧)-氧、阴离子(氧)-氢距离以及阴离子(水)-水对的阴离子(氧)-氧-氢角度的构型标准来定义氢键。对于角度标准的两个不同截止值,获得了氢键动力学的结果。在这两种情况下,发现氢键的动力学行为在其对离子大小和温度的依赖性方面相似。发现氟离子-水氢键的断裂速率比水-水氢键慢得多,而氯离子和溴离子-水氢键的寿命比氟离子-水氢键短,但仍比水-水氢键长。发现碘离子-水氢键的短时间动力学略快,而其长时间动力学比相应的水-水氢键动力学略慢。还讨论了观察到的阴离子(水)-水氢键动力学与水分子在离子(水)水化壳中的旋转和平动扩散以及停留时间的相关性。随着温度的变化,发现Cl⁻-水和水-水氢键的寿命均呈现阿伦尼乌斯行为,其中Cl⁻-水氢键的活化能略高。

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