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Molecular dynamics simulations of water clusters with ions as atmospheric conditions

机译:离子为大气条件的水团簇的分子动力学模拟

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Clustering of water molecules on charged particles has been studied using the method of molecular dynamics simulations. A selected set of model metal and halogen ions, carrying both positive and negative charges, is chosen as nucleation centers for water molecules. The influence of the ion charge, its size, and short-range interactions on the local structure, and kinetic characteristics are investigated for the ion-centered clusters of 20 and 30 water molecules at 200 and 300 K, respectively. It is shown, based on radial densities, energy, polarization profiles, and orientational distribution functions, that the local water structure in the clusters becomes perturbed to a larger degree around negative ions comapred to ions carrying a corresponding positive charge. The electric field on an anion is more effectively screened by the first hydration shell, resulting in a weaker dependence of the relaxation processes, on the ion field in the second hydration shell. The dependence of the work of cluster formation on the ion radius is more pronounced in the case of negative ions. The dependence of the properties on the cluster size are investigated. It was found that for the water-alkali ion system potentials used, the dependence of the work of cluster formation on the number of water molecules has a minimum at about N = 30. The obtained work of cluster formation for the anions was found to be consistently less than that for the cations. Unfortunately, this work of formation does not alone provide an answer to the still unsolved problem of sign preference connected to water condensation on charged particles in atmospheric conditions.
机译:使用分子动力学模拟方法研究了水分子在带电粒子上的聚集。选择一组既带正电荷又带负电荷的模型金属和卤素离子作为水分子的成核中心。分别研究了200和300 K下20和30个水分子的离子中心簇的离子电荷,其大小和短程相互作用对局部结构和动力学特性的影响。基于径向密度,能量,极化分布和取向分布函数,结果表明,簇中的局部水结构在共同映射到带有相应正电荷的离子的负离子周围受到较大程度的干扰。阴离子上的电场被第一水合壳更有效地屏蔽,从而导致弛豫过程对第二水合壳中的离子场的依赖性更弱。在负离子的情况下,团簇形成功对离子半径的依赖性更加明显。研究了性质对簇大小的依赖性。发现对于所使用的水碱离子系统电势,簇形成功对水分子数量的依赖性最小,约为N =30。发现阴离子的簇形成功为始终少于阳离子。不幸的是,这种形成工作并不能单独解决尚未解决的,与大气条件下带电粒子上的水凝结有关的符号偏好问题。

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