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Atomistic molecular dynamics simulation of diffusion in binary liquid n-alkane mixtures

机译:二元液态正构烷烃混合物中扩散的原子分子动力学模拟

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摘要

Well relaxed atomistic configurations of binary liquid mixtures of n-alkanes, obtained via a new Monte Carlo simulation algorithm [Zervopoulou et al., J. Chem. Phys. 115, 2860 (2001)], have been subjected to detailed molecular dynamics simulations in the canonical ensemble. Four different binary systems have been simulated (C_5-C_78 at T = 47 K, C_10-C_78 at T = 458 K, and C_12-C_60 at T = 403.5 and 473.5 K). Results are presented for the diffusion properties of these mixtures over a range of concentrations of the solvent (lighter component). The self-diffusion coefficients of the n-alkanes, calculated directly from the simulations, are reported and compared with the predictions of two theories: the detailed free volume theory proposed by Vrentas and Duda based on the availability of free volume in the blends, and a combined Rouse diffusant and chain-end free volume theory proposed by Bueche and von Meerwall et al. A direct comparison with recently obtained experimental data [von Meerwall et al., J. Chem. Phys. 111, 750 (1999)] is also presented.
机译:通过新的蒙特卡罗模拟算法[Zervopoulou等人,化学杂志(J.物理115,2860(2001)],已经在规范集合中进行了详细的分子动力学模拟。已模拟了四个不同的二进制系统(T = 47 K时为C_5-C_78,T = 458 K时为C_10-C_78,T = 403.5和473.5 K时为C_12-C_60)。给出了这些混合物在一定浓度的溶剂(较轻的组分)中的扩散性能的结果。报告了直接从模拟中计算出的正构烷烃的自扩散系数,并将其与两种理论的预测结果进行了比较:Vrentas和Duda基于混合物中自由体积的可用性提出的详细自由体积理论,以及Bueche和von Meerwall等人提出的Rouse扩散和链端自由体积的组合理论。与最近获得的实验数据进行直接比较[von Meerwall等,化学杂志,1986年。物理111,750(1999)]。

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