首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >INFLUENCE OF THE SIZE AND WALL CURVATURE OF NANOPORES ON THE GAS DISTRIBUTION PATTERN IN THEM
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INFLUENCE OF THE SIZE AND WALL CURVATURE OF NANOPORES ON THE GAS DISTRIBUTION PATTERN IN THEM

机译:纳米孔的大小和壁面弯曲度对其内气体分布规律的影响

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摘要

The behavior of hydrogen molecules in carbon nanopores of different shapes (slit-shaped, cylindrical, and spherical) is investigated using the molecular dynamics method. It is shown that an adsorbed molecular layer with increased density is formed near the nanopore walls, and dynamic equilibrium is established between this layer and the gas in the central region of the nanopore. The distribution of the density of gas molecules over the cross section is found to depend on the size and wall curvature of nanopores: with a reduction in the nanopore size, the density of the adsorbate increases more rapidly in spherical nanopores, whose walls are characterized by greater mean curvature.
机译:使用分子动力学方法研究了氢分子在不同形状(狭缝形,圆柱形和球形)的碳纳米孔中的行为。结果表明,在纳米孔壁附近形成了密度增加的吸附分子层,并且在该层与纳米孔中心区域的气体之间建立了动态​​平衡。发现气体分子的密度在横截面上的分布取决于纳米孔的大小和壁曲率:随着纳米孔大小的减小,球形纳米孔中吸附物的密度增加得更快,其球形壁的特征在于平均曲率更大。

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