Hassan Sergio A
Center for Molecular Modeling, Division of Computational Bioscience, CIT National Institutes of Health, U.S. DHHS, Bethesda, MD 20892, USA.
J Phys Chem B. 2008 Aug 28;112(34):10573-84. doi: 10.1021/jp801147t. Epub 2008 Aug 5.
Dynamic simulations are used to investigate ion cluster formation in unsaturated aqueous NaCl at 25 degrees C. Statistical, structural, and dynamic properties are reported. An effort is made to identify general behaviors that are expected to hold beyond the limitations of the force field. Above approximately 1 M, clusters with more than ten ions begin to form after approximately 10-20 ns of simulation time, but no evidence of irreversible ion aggregation is observed. Cluster survival times are estimated, showing that the kinetics become increasingly complex as salt is added, leading to multiple decay rates. Cluster dipole moment distributions show characteristic peaks that reflect the preferred conformations of clusters in solution. These are modulated by electrostatic and liquid-structure forces and are described in detail for clusters of up to five ions. For a given size and charge, the cluster morphology is independent of salt concentration. Below approximately 2 M, clusters affect the structure of water in their first hydration shells, so dipole moments parallel to the cluster macrodipoles are induced. These effects show a weak dependence with concentration below approximately 2 M, but vanish in the 2-3 M range. A possible connection with the structural transition recently suggested by NMR data in concentrated electrolytes is discussed. The effects of electrostatics on cluster speciation and morphology are discussed based on results from a set of simulations carried out with the ionic charges removed.
动态模拟用于研究25摄氏度下不饱和NaCl水溶液中的离子簇形成。报告了统计、结构和动力学性质。努力识别预期在力场限制之外仍成立的一般行为。在大约1 M以上,模拟时间约10 - 20 ns后开始形成含有十个以上离子的簇,但未观察到不可逆离子聚集的证据。估计了簇的存活时间,表明随着盐的加入动力学变得越来越复杂,导致多种衰减速率。簇偶极矩分布显示出特征峰,反映了溶液中簇的优选构象。这些受静电和液体结构力调制,并针对多达五个离子的簇进行了详细描述。对于给定的大小和电荷,簇形态与盐浓度无关。在大约2 M以下,簇影响其第一水合壳层中的水结构,因此会诱导出与簇大偶极平行的偶极矩。这些效应在大约2 M以下对浓度的依赖性较弱,但在2 - 3 M范围内消失。讨论了与最近浓电解质中NMR数据所表明的结构转变的可能联系。基于一组去除离子电荷后进行的模拟结果,讨论了静电对簇形态和结构的影响。