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通过从头算机器学习分子动力学模拟洞察水通过六方氮化硼纳米毛细管的渗透情况。

Insights into Water Permeation through hBN Nanocapillaries by Ab Initio Machine Learning Molecular Dynamics Simulations.

作者信息

Ghorbanfekr Hossein, Behler Jörg, Peeters François M

机构信息

Data Science Hub, Flemish Institute for Technological Research (VITO), Boeretang 200, 2400 Mol, Belgium.

Departement Fysica, Universiteit Antwerpen,, Groenenborgerlaan 171, Antwerpen B-2020, Belgium.

出版信息

J Phys Chem Lett. 2020 Sep 3;11(17):7363-7370. doi: 10.1021/acs.jpclett.0c01739. Epub 2020 Aug 24.

DOI:10.1021/acs.jpclett.0c01739
PMID:32787306
Abstract

Water permeation between stacked layers of hBN sheets forming 2D nanochannels is investigated using large-scale ab initio-quality molecular dynamics simulations. A high-dimensional neural network potential trained on density-functional theory calculations is employed. We simulate water in van der Waals nanocapillaries and study the impact of nanometric confinement on the structure and dynamics of water using both equilibrium and nonequilibrium methods. At an interlayer distance of 10.2 Å confinement induces a first-order phase transition resulting in a well-defined AA-stacked bilayer of hexagonal ice. In contrast, for < 9 Å,  the 2D water monolayer consists of a mixture of different locally ordered patterns of squares, pentagons, and hexagons. We found a significant change in the transport properties of confined water, particularly for monolayer water where the water-solid friction coefficient decreases to half and the diffusion coefficient increases by a factor of 4 as compared to bulk water. Accordingly, the slip-velocity is found to increase under confinement and we found that the overall permeation is dominated by monolayer water adjacent to the hBN membranes at extreme confinements. We conclude that monolayer water in addition to bilayer ice has a major contribution to water transport through 2D nanochannels.

摘要

使用大规模的从头算质量分子动力学模拟,研究了形成二维纳米通道的hBN片层堆叠层之间的水渗透。采用了基于密度泛函理论计算训练的高维神经网络势。我们在范德华纳米毛细管中模拟水,并使用平衡和非平衡方法研究纳米限域对水的结构和动力学的影响。在层间距为10.2 Å时,限域诱导了一级相变,形成了定义明确的六方冰AA堆叠双层。相比之下,对于层间距小于9 Å的情况,二维水单层由正方形、五边形和六边形的不同局部有序图案的混合物组成。我们发现限域水的传输性质发生了显著变化,特别是对于单层水,与 bulk water相比,水-固体摩擦系数降低到一半,扩散系数增加了4倍。因此,发现滑移速度在限域下增加,并且我们发现在极端限域下,整体渗透由与hBN膜相邻的单层水主导。我们得出结论,除了双层冰之外,单层水对通过二维纳米通道的水传输也有主要贡献。

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