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金纳米管内水分子的吸附:一项分子动力学研究。

Adsorption of water molecules inside a Au nanotube: a molecular dynamics study.

作者信息

Weng Meng-Hsiung, Lee Wen-Jay, Ju Shin-Pon, Chao Chien-Hsiang, Hsieh Nan-Kai, Chang Jee-Gong, Chen Hui-Lung

机构信息

Department of Mechanical and Electro-Mechanical Engineering, National Sun-Yat-Sen University Kaohsiung, Taiwan 804.

出版信息

J Chem Phys. 2008 May 7;128(17):174705. doi: 10.1063/1.2907844.

Abstract

A molecular dynamics simulation of water molecules through a Au nanotube with a diameter of 20 A at bulk densities 0.8, 1, and 1.2 gcm(3) has been carried out. The water molecules inside a nanoscale tube, unlike those inside a bulk tube, have a confined effect. The interaction energy of the Au nanotube wall has a direct influence on the distribution of water molecules inside the Au tube in that the adsorption of the water molecules creates shell-like formations of water. Moreover, the high number of adsorbed molecules has already achieved saturation at the wall of the Au nanotube at three bulk densities. This work compares the distribution percentage profiles of hydrogen bonds for different regions inside the tube. The structural characteristics of water molecules inside the tube have also been studied. The results reveal that the numbers of hydrogen bonds per water molecule influence the orientational order parameter q. In addition, the phenomenon of a group of molecules bonded inside the tube can be observed as the number of hydrogen bonds increase.

摘要

已对直径为20埃的金纳米管内的水分子进行了分子动力学模拟,模拟时的体密度分别为0.8、1和1.2 g/cm³。纳米级管内的水分子与体相管内的水分子不同,具有受限效应。金纳米管壁的相互作用能对金管内水分子的分布有直接影响,因为水分子的吸附会形成壳状水结构。此外,在三种体密度下,大量吸附分子在金纳米管壁处已达到饱和。这项工作比较了管内不同区域氢键的分布百分比曲线。还研究了管内水分子的结构特征。结果表明,每个水分子的氢键数量会影响取向序参数q。此外,随着氢键数量的增加,可以观察到管内有一组分子键合的现象。

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