溶剂化
化学
溶剂化壳
水溶液
锌
无机化学
分子动力学
氯化物
电解质
偶极子
化学物理
分子
八面体
密度泛函理论
协调数
计算化学
结晶学
物理化学
卤化物
软硬酸碱理论
锌化合物
四面体
强电解质
三角双锥分子几何
隐溶剂化
作者
Disha Brahma,Nikhil V. S. Avula,Sundaram Balasubramanian
标识
DOI:10.1021/acs.jpcb.6c01759
摘要
Aqueous ZnCl 2 serves as a model electrolyte where the zinc ion exhibits variable coordination geometries and strongly polarizes water in its solvation shells. Molecular dynamics simulations using a machine-learned interatomic potential trained at the revPBE-D3 level of density functional theory reveal its structure, dynamics, and electrostatics. Dilute solutions feature the dominant octahedral [Zn(H 2 O) 6 ] 2+ complex, which adapts to trigonal bipyramidal and tetrahedral geometries to accommodate chloride ions. Relative to bulk water, water molecules in zinc’s first solvation shell in the complexes exhibit an enhancement of their dipole moment by 15–30%, and a retardation of their residence and reorientational time scales. The residence time displays a nonmonotonic dependence on the number of participating chloride ions; a minimum of 96 ps for [ZnCl] + and maxima of 550 ps for Zn 2+ and [ZnCl 3 ] − are observed. Exchange and reorientation time scales in the second solvation shell decrease monotonically with chloride inclusion in the complex.
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