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通过水-空气界面的结构与动力学探究密度泛函理论的准确性

Accessing the Accuracy of Density Functional Theory through Structure and Dynamics of the Water-Air Interface.

作者信息

Ohto Tatsuhiko, Dodia Mayank, Xu Jianhang, Imoto Sho, Tang Fujie, Zysk Frederik, Kühne Thomas D, Shigeta Yasuteru, Bonn Mischa, Wu Xifan, Nagata Yuki

机构信息

Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan.

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

J Phys Chem Lett. 2019 Sep 5;10(17):4914-4919. doi: 10.1021/acs.jpclett.9b01983. Epub 2019 Aug 13.

Abstract

Density functional theory-based molecular dynamics simulations are increasingly being used for simulating aqueous interfaces. Nonetheless, the choice of the appropriate density functional, critically affecting the outcome of the simulation, has remained arbitrary. Here, we assess the performance of various exchange-correlation (XC) functionals, based on the metrics relevant to sum-frequency generation spectroscopy. The structure and dynamics of water at the water-air interface are governed by heterogeneous intermolecular interactions, thereby providing a critical benchmark for XC functionals. We find that the XC functionals constrained by exact functional conditions (revPBE and revPBE0) with the dispersion correction show excellent performance. The poor performance of the empirically optimized density functional (M06-L) indicates the importance of satisfying the exact functional condition. Understanding the performance of different XC functionals can aid in resolving the controversial interpretation of the interfacial water structure and direct the design of novel, improved XC functionals better suited to describing the heterogeneous interactions in condensed phases.

摘要

基于密度泛函理论的分子动力学模拟越来越多地用于模拟水相界面。尽管如此,合适的密度泛函的选择对模拟结果有着至关重要的影响,却仍然具有随意性。在此,我们基于与和频产生光谱相关的指标评估了各种交换关联(XC)泛函的性能。水 - 空气界面处水的结构和动力学受非均匀分子间相互作用支配,从而为XC泛函提供了一个关键的基准。我们发现,通过精确泛函条件约束(revPBE和revPBE0)并带有色散校正的XC泛函表现出色。经验优化密度泛函(M06 - L)的不佳表现表明满足精确泛函条件的重要性。了解不同XC泛函的性能有助于解决对界面水结构的争议性解释,并指导设计更适合描述凝聚相中非均匀相互作用的新型、改进的XC泛函。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55b8/6748669/6aaea6787bee/jz9b01983_0001.jpg

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