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Molecular self-diffusion in nanoscale cylindrical pores and classical Fick's law predictions

机译:纳米级圆柱孔中的分子自扩散和经典菲克定律预测

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摘要

Molecular-dynamics calculations are carried out to study the self-diffusion of water molecules confined in cylindrical pores. It is found that the classical Fick's law description provides a surprisingly accurate prediction for the general behaviors of self-diffusion even for pore size of a few molecular diameters. The diffusion coefficient in the axial direction is reduced relative to bulk fluids for pore size less than about ten molecular diameters. In the radial direction, the mean-square displacement accurately follows Fick's law prediction, but with an average diffusion coefficient slightly lower than the bulk value. The origin of the diffusion behaviors is traced to the molecular motion in the restricted geometry of the cylindrical pores. (C) 2005 American Institute of Physics.
机译:进行分子动力学计算以研究限制在圆柱孔中的水分子的自扩散。发现经典的菲克定律描述即使对于几个分子直径的孔径,也能为自扩散的一般行为提供令人惊讶的准确预测。对于孔径小于约十个分子直径的流体,轴向扩散系数相对于散装流体降低。在径向方向上,均方根位移准确地遵循菲克定律的预测,但平均扩散系数略低于体积值。扩散行为的起源可追溯到圆柱孔的受限几何形状中的分子运动。 (C)2005美国物理研究所。

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