首页> 外文期刊>The Journal of Chemical Physics >Surface solvation for an ion in a water cluster - art. no. 024513
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Surface solvation for an ion in a water cluster - art. no. 024513

机译:水簇中离子的表面溶剂化-艺术。没有。 024513

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We have used molecular dynamics simulations to study the structural, dynamical, and thermodynamical properties of ions in water clusters. Careful evaluations of the free energy, internal energy, and entropy are used to address controversial or unresolved issues, related to the underlying physical cause of surface solvation, and the basic assumptions that go with it. Our main conclusions are the following. (i) The main cause of surface solvation of a single ion in a water cluster is both water and ion polarization, coupled to the charge and size of the ion. Interestingly, the total energy of the ion increases near the cluster surface, while the total energy of water decreases. Also, our analysis clearly shows that the cause of surface solvation is not the size of the total water dipole (unless this is too small). (ii) The entropic contribution is the same order of magnitude as the energetic contribution, and therefore cannot be neglected for quantitative results. (iii) A pure energetic analysis can give a qualitative description of the ion position at room temperature. (iv) We have observed surface solvation of a large positive iodinelike ion in a polarizable water cluster, but not in a nonpolarizable water cluster. (C) 2005 American Institute of Physics.
机译:我们已经使用分子动力学模拟来研究水簇中离子的结构,动力学和热力学性质。对自由能,内能和熵的仔细评估用于解决有争议的或尚未解决的问题,这些问题与表面溶剂化的潜在物理原因以及随之而来的基本假设有关。我们的主要结论如下。 (i)水簇中单个离子发生表面溶剂化的主要原因是水和离子极化,这与离子的电荷和大小有关。有趣的是,离子的总能量在簇表面附近增加,而水的总能量减少。同样,我们的分析清楚地表明,表面溶剂化的原因不是总水偶极子的大小(除非它太小)。 (ii)熵的贡献与能量的贡献在数量级上相同,因此定量结果不可忽略。 (iii)纯粹的能量分析可以定性描述室温下的离子位置。 (iv)我们观察到在极化水簇中有大的正碘样离子的表面溶剂化,但在非极化水簇中没有。 (C)2005美国物理研究所。

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