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利用粒子群优化算法开发石墨烯与水之间的非键相互作用参数。

Development of non-bonded interaction parameters between graphene and water using particle swarm optimization.

作者信息

Bejagam Karteek K, Singh Samrendra, Deshmukh Sanket A

机构信息

Department of Chemical Engineering, Virginia Tech, Blacksburg, Virginia, 24061.

Case New Holland Industrial, 6900 Veterans Blvd, Burr Ridge, Illinois, 60527.

出版信息

J Comput Chem. 2018 May 5;39(12):721-734. doi: 10.1002/jcc.25141. Epub 2017 Dec 19.

Abstract

New Lennard-Jones parameters have been developed to describe the interactions between atomistic model of graphene, represented by REBO potential, and five commonly used all-atom water models, namely SPC, SPC/E, SPC/Fw, SPC/Fd, and TIP3P/Fs by employing particle swarm optimization (PSO) method. These new parameters were optimized to reproduce the macroscopic contact angle of water on a graphene sheet. The calculated line tension was in the order of 10 J/m for the droplets of all water models. Our molecular dynamics simulations indicate the preferential orientation of water molecules near graphene-water interface with one OH bond pointing toward the graphene surface. Detailed analysis of simulation trajectories reveals the presence of water molecules with ≤∼1, ∼2, and ∼4 hydrogen bonds at the surface of air-water interface, graphene-water interface, and bulk region of the water droplet, respectively. Presence of water molecules with ≤∼1 and ∼2 hydrogen bonds suggest the existence of water clusters of different sizes at these interfaces. The trends observed in the libration, bending, and stretching bands of the vibrational spectra are closely associated with these structural features of water. The inhomogeneity in hydrogen bond network of water at the air-water and graphene-water interface is manifested by broadening of the peaks in the libration band for water present at these interfaces. The stretching band for the molecules in water droplet shows a blue shift as compared to the pure bulk water, which conjecture the presence of weaker hydrogen bond network in a droplet. © 2017 Wiley Periodicals, Inc.

摘要

通过采用粒子群优化(PSO)方法,已开发出新的Lennard-Jones参数,用于描述以REBO势表示的石墨烯原子模型与五种常用的全原子水模型(即SPC、SPC/E、SPC/Fw、SPC/Fd和TIP3P/Fs)之间的相互作用。这些新参数经过优化,以重现水在石墨烯片上的宏观接触角。对于所有水模型的液滴,计算得到的线张力约为10 J/m。我们的分子动力学模拟表明,石墨烯-水界面附近的水分子优先取向,其中一个OH键指向石墨烯表面。对模拟轨迹的详细分析表明,在空气-水界面、石墨烯-水界面和水滴本体区域的表面,分别存在氢键数≤1、2和4的水分子。氢键数≤1和~2的水分子的存在表明在这些界面存在不同大小的水簇。振动光谱的平动、弯曲和拉伸带中观察到的趋势与水的这些结构特征密切相关。空气-水和石墨烯-水界面处水的氢键网络的不均匀性表现为这些界面处水的平动带中峰的展宽。与纯本体水相比,水滴中分子的拉伸带显示出蓝移,这推测液滴中存在较弱的氢键网络。© 2017威利期刊公司

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