首页> 外文期刊>Chemistry: A European journal >Ab initio molecular dynamics studies of ionic dissolution and precipitation of sodium chloride and silver chloride in water clusters, NaCl(H2O)(n) and AgCl(H2O)(n), n=6, 10, and 14
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Ab initio molecular dynamics studies of ionic dissolution and precipitation of sodium chloride and silver chloride in water clusters, NaCl(H2O)(n) and AgCl(H2O)(n), n=6, 10, and 14

机译:从头算分子动力学研究氯化钠和氯化银在水团簇,NaCl(H2O)(n)和AgCl(H2O)(n),n = 6、10和14中的离子溶解和沉淀

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An ab initio molecular dynamics method was used to compare the ionic dissolution of soluble sodium chloride (NaCl) in water clusters with the highly insoluble silver chloride (AgCl). The investigations focused on the solvation structures, dynamics, and energetics of the contact ion pair (CIP) and of the solvent-separated ion pair (SSIP) in NaCI(H2O)(n) and AgCI(H2O)(n) with cluster sizes of n = 6, 10 and 14. We found that the minimum cluster size required to stabilize the SSIP figuration in NaCI(H2O)(n) is temperature-dependent. For n = 6, both configurations are present as two distinct local minima on the free-energy profile at 100 K, whereas SSIP is unstable at 300 K. Both configurations, separated by a low barrier (< 10 kJmol(-1)), are identifiable on the free energy profiles of NaCl(H2O)(n) for n = 10 and 14 at 300 K, with the Na+/Cl- pairs being internally solvated in the water cluster and the SSIP configuration being slightly higher in energy (< 5 kJ mol(-1)). In agreement with the low bulk solubility of AgCl, no SSIP minimum is observed on the free-energy profiles of finite AgCl(H2O), clusters. The AgCl interaction is more covalent in nature, and is less affected by the water solvent. Unlike NaCl, AgCl is mainly solvated on the surface in finite water clusters, and ionic dissolution requires a significant reorganization of the solvent structure.
机译:从头算分子动力学方法用于比较可溶性氯化钠(NaCl)在水团簇中与高度不溶性氯化银(AgCl)的离子溶解。研究集中在具有簇大小的NaCl(H2O)(n)和AgCI(H2O)(n)中的接触离子对(CIP)和溶剂分离离子对(SSIP)的溶剂化结构,动力学和能级的n = 6、10和14。我们发现,稳定NaCl(H2O)(n)中的SSIP形状所需的最小簇尺寸与温度有关。对于n = 6,两种配置在100 K时都以两个不同的局部最小值出现在自由能谱上,而SSIP在300 K时不稳定。两种配置都被低势垒(<10 kJmol(-1))隔开,在NaCl(H2O)(n)的自由能曲线上可以确定,n = 10和14在300 K时,Na + / Cl-对在水簇中内部溶剂化,SSIP构型的能量略高(< 5 kJ mol(-1))。与AgCl的低整体溶解度相一致,在有限的AgCl(H2O)簇的自由能分布图中未观察到SSIP最小值。 AgCl相互作用本质上更具共价性,受水溶剂的影响较小。与氯化钠不同,氯化银主要在有限的水簇中表面溶解,并且离子溶解需要溶剂结构的显着重组。

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