溶剂化
溶剂化壳
氯化物
氢键
水溶液
离子
材料科学
分子
中子衍射
中子散射
氢
化学物理
从头算
散射
溶剂
质子
无机化学
物理化学
结晶学
化学
晶体结构
有机化学
物理
冶金
量子力学
光学
作者
Jianhang Xu,Zhaoru Sun,Chunyi Zhang,Mark DelloStritto,Deyu Lu,Michael L. Klein,Xifan Wu
标识
DOI:10.1103/physrevmaterials.5.l012801
摘要
Path-integral ab initio molecular dynamics (PI-AIMD) calculations have been employed to probe the nature of chloride ion solvation in aqueous solution. Nuclear quantum effects (NQEs) are shown to weaken hydrogen bonding between the chloride anion and the solvation shell of water molecules. As a consequence, the disruptive effect of the anion on the solvent water structure is significantly reduced compared to what is found in the absence of NQEs. The chloride hydration structure obtained from PI-AIMD agrees well with information extracted from neutron scattering data. In particular, the observed satellite peak in the hydrogen-chloride-hydrogen triple angular distribution serves as a clear signature of NQEs. The present results suggest that NQEs are likely to play a crucial role in determining the structure of saline solutions.
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