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Hydrogen-bond structure dynamics in bulk water: insights from ab initio simulations with coupled cluster theory

机译:散装水中的氢键结构动力学:从头算模拟到耦合簇理论的启示

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摘要

An accurate and efficient ab initio molecular dynamics (AIMD) simulation of liquid water was made possible using the fragment-based approach (J. F. Liu, X. He and J. Z. H. Zhang, Phys. Chem. Chem. Phys., 2017, >19, 11931–11936). In this study, we advance the AIMD simulations using the fragment-based coupled cluster (CC) theory, more accurately revealing the structural and dynamical properties of liquid water under ambient conditions. The results show that the double-donor hydrogen-bond configurations in liquid water are nearly in balance with the single-donor configurations, with a slight bias towards the former. Our observation is in contrast to the traditional tetrahedral water structure. The hydrogen-bond switching dynamics in liquid water are very fast, with a hydrogen-bond life time of around 0.78 picoseconds, determined using AIMD simulation at the CCD/aug-cc-pVDZ level. This time scale is remarkably shorter than the ∼3.0 picoseconds that is commonly obtained from traditional nonpolarized force fields and density functional theory (DFT) based first-principles simulations. Additionally, the obtained radial distribution functions, triplet oxygen angular distribution, diffusion coefficient, and the dipole moment of the water molecule are uniformly in good agreement with the experimental observations. The current high-level AIMD simulation sheds light on the understanding of the structural and dynamical properties of liquid water.
机译:使用基于片段的方法,可以对液态水进行准确而有效的从头算分子动力学(AIMD)模拟(刘建峰,X。贺和张建忠,物理化学化学物理,2017,> 19 ,11931-11936)。在这项研究中,我们使用基于片段的耦合簇(CC)理论推进AIMD仿真,从而更准确地揭示环境条件下液态水的结构和动力学特性。结果表明,液态水中的双供体氢键构型几乎与单供体构型平衡,对前者略有偏差。我们的观察结果与传统的四面体水结构相反。液态水中的氢键转换动力学非常快,氢键寿命大约为0.78皮秒,这是通过AIMD模拟在CCD / aug-cc-pVDZ水平上确定的。该时间尺度明显短于通常从传统非极化力场和基于密度泛函理论(DFT)的第一原理模拟中获得的约3.0皮秒。另外,所获得的径向分布函数,三重态氧角分布,扩散系数和水分子的偶极矩与实验观察结果一致。当前的高级AIMD仿真为了解液态水的结构和动力学特性提供了启示。

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