Department of Chemistry, Zhejiang University, Hangzhou 310027, People's Republic of China.
J Chem Phys. 2010 Sep 7;133(9):094501. doi: 10.1063/1.3469811.
The transition from single-file diffusion to Fickian diffusion in narrow cylindrical pores is investigated for systems of rigid single-walled armchair carbon nanotubes, solvated with binary mixtures of Lennard-Jones fluids (Ar/Ne, Ar/Kr, and Ar/Xe). A range of effects is examined including the mixture concentration, the size ratio of the two components, and the nanotube diameter. The transition from single-file to Fickian diffusion in varying carbon nanotube diameters is analyzed in terms of the Fickian self-diffusivity and the single-file mobility of the mixture components. It is found that the single-file to Fickian carbon nanotube transition diameter is a unique property of the individual molecule's diameter and remains unchanged regardless of the mixture composition. In applications of binary mixtures, each component may crossover from single-file to Fickian diffusion in a different carbon nanotube diameter, giving rise to bimodal diffusion in some nanotubes. This transition allows for one species to diffuse in single-file while the other diffuses by a Fickian mechanism, yielding orders of magnitude difference between the self-diffusional rates of the two molecules. This phenomenon might be further extended to alter the diffusional motion of molecules in nanoporous materials.
从单分子扩散到狭窄圆柱形孔中的菲克扩散的转变,对于刚性单壁扶手椅碳纳米管的体系进行了研究,该体系用 Lennard-Jones 流体(Ar/Ne、Ar/Kr 和 Ar/Xe)的二元混合物进行了溶剂化。研究了包括混合物浓度、两种成分的大小比和纳米管直径在内的一系列影响。从单分子扩散到不同碳纳米管直径的菲克扩散的转变,根据菲克自扩散率和混合物成分的单分子迁移率进行了分析。结果发现,单分子到菲克碳纳米管转变直径是单个分子直径的独特特性,无论混合物组成如何,它都保持不变。在二元混合物的应用中,每个成分都可能在不同的碳纳米管直径下从单分子扩散转变为菲克扩散,导致一些纳米管中出现双峰扩散。这种转变允许一种物质以单分子形式扩散,而另一种物质通过菲克机制扩散,导致两种分子的自扩散率之间存在数量级差异。这种现象可能会进一步扩展,以改变纳米多孔材料中分子的扩散运动。