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Molecular dynamics calculation of rotational diffusion coefficient of a carbon nanotube in fluid

机译:碳纳米管在流体中旋转扩散系数的分子动力学计算

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Rotational diffusion processes are correlated with nanoparticle visualization and manipulation techniques, widely used in nanocomposites, nanofluids, bioscience, and so on. However, a systematical methodology of deriving this diffusivity is still lacking. In the current work, three molecular dynamics (MD) schemes, including equilibrium (Green-Kubo formula and Einstein relation) and nonequilibrium (Einstein-Smoluchowski relation) methods, are developed to calculate the rotational diffusion coefficient, taking a single rigid carbon nanotube in fluid argon as a case. We can conclude that the three methods produce same results on the basis of plenty of data with variation of the calculation parameters (tube length, diameter, fluid temperature, density, and viscosity), indicative of the validity and accuracy of the MD simulations. However, these results have a non-negligible deviation from the theoretical predictions of Tirado et al. [J. Chem. Phys. 81, 2047 (1984)], which may come from several unrevealed factors of the theory. The three MD methods proposed in this paper can also be applied to other situations of calculating rotational diffusion coefficient.
机译:旋转扩散过程与纳米颗粒的可视化和操纵技术相关,广泛用于纳米复合材料,纳米流体,生物科学等领域。但是,仍然缺乏得出这种扩散性的系统方法。在当前的工作中,开发了三种分子动力学(MD)方案,包括平衡(Green-Kubo公式和爱因斯坦关系)和非平衡(Einstein-Smoluchowski关系)方法,通过使用单个刚性碳纳米管计算旋转扩散系数。流体氩气的情况。我们可以得出结论,在计算参数(管长,直径,流体温度,密度和粘度)变化的大量数据的基础上,这三种方法产生相同的结果,表明了MD模拟的有效性和准确性。但是,这些结果与Tirado等人的理论预测有不可忽略的偏差。 [J.化学物理81,2047(1984)],这可能来自该理论的几个尚未揭示的因素。本文提出的三种MD方法也可以应用于其他计算旋转扩散系数的情况。

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