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水液/气界面处溶质的旋转动力学。

Solute rotational dynamics at the water liquid/vapor interface.

作者信息

Benjamin Ilan

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Cruz, CA 95064, USA.

出版信息

J Chem Phys. 2007 Nov 28;127(20):204712. doi: 10.1063/1.2803895.

Abstract

The rotational dynamics of a number of diatomic molecules adsorbed at different locations at the interface between water and its own vapors are studied using classical molecular dynamics computer simulations. Both equilibrium orientational and energy correlations and nonequilibrium orientational and energy relaxation correlations are calculated. By varying the dipole moment of the molecule and its location, and by comparing the results with those in bulk water, the effects of dielectric and mechanical frictions on reorientation dynamics and on rotational energy relaxation can be studied. It is shown that for nonpolar and weekly polar solutes, the equilibrium orientational relaxation is much slower in the bulk than at the interface. As the solute becomes more polar, the rotation slows down and the surface and bulk dynamics become similar. The energy relaxation (both equilibrium and nonequilibrium) has the opposite trend with the solute dipole (larger dipoles relax faster), but here again the bulk and surface results converge as the solute dipole is increased. It is shown that these behaviors correlate with the peak value of the solvent-solute radial distribution function, which demonstrates the importance of the first hydration shell structure in determining the rotational dynamics and dependence of these dynamics on the solute dipole and location.

摘要

利用经典分子动力学计算机模拟研究了吸附在水及其蒸汽界面不同位置的多种双原子分子的旋转动力学。计算了平衡取向和能量关联以及非平衡取向和能量弛豫关联。通过改变分子的偶极矩及其位置,并将结果与体相水中的结果进行比较,可以研究介电和机械摩擦对重新取向动力学和旋转能量弛豫的影响。结果表明,对于非极性和弱极性溶质,体相中的平衡取向弛豫比界面处慢得多。随着溶质极性增强,旋转减慢,表面和体相动力学变得相似。能量弛豫(平衡和非平衡)与溶质偶极呈现相反趋势(偶极越大弛豫越快),但同样随着溶质偶极增加,体相和表面结果趋于一致。结果表明,这些行为与溶剂 - 溶质径向分布函数的峰值相关,这表明第一水合层结构在确定旋转动力学以及这些动力学对溶质偶极和位置的依赖性方面的重要性。

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