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首页> 外文期刊>The Journal of Chemical Physics >Molecular dynamics simulations of the homogeneous nucleation of UF, and SF, molecules: Effects of the intramolecular vibrational relaxations on the nucleation rates
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Molecular dynamics simulations of the homogeneous nucleation of UF, and SF, molecules: Effects of the intramolecular vibrational relaxations on the nucleation rates

机译:UF和SF分子均匀成核的分子动力学模拟:分子内振动弛豫对成核速率的影响

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The effects of flexibility in the homogeneous nucleation processes of UF6 and SF6 molecules from vapor phase were investigated by classical molecular dynamics (MD) simulations. We performed MD simulations using a flexible-molecule model and compared the results with those obtained from a rigid-molecule model. We took into account the flexibility of molecules in MD simulations by a harmonic intramolecular potential. We found that the nucleation rate in the flexible model of the UF6 molecule was about twice as large as that in the rigid model of UF6. This acceleration in nucleation rate was attributed to the flow of the condensation heat into the intramolecular vibrations. On the other hand, the nucleation rates in rigid and flexible models of SF6 were almost the same because the flow of the condensation heat into the intramolecular vibrations in the flexible model of SF6 was negligibly small. In order to confirm the reliability of the classical intramolecular vibrational model in the present work, we estimated the intramolecular vibrational relaxation times of the flexible UF6 and the flexible SF6 molecules in the gas phase using the same MD simulation technique as used for the nucleations. The intramolecular vibrational relaxation times obtained from the MD simulations were in good agreement with those from the experimental data in cases of both UF6 and SF6 molecules. (C) 1998 American Institute of Physics. [References: 24]
机译:通过经典的分子动力学(MD)模拟研究了柔性对六氟化铀和六氟化硫分子气相均相成核过程的影响。我们使用柔性分子模型进行了MD模拟,并将结果与​​从刚性分子模型获得的结果进行了比较。我们通过谐波分子内电势考虑了MD模拟中分子的灵活性。我们发现,UF6分子的柔性模型中的成核速率大约是UF6分子的刚性模型中的成核速率的两倍。成核速率的这种加速归因于冷凝热流入分子内振动。另一方面,SF6刚性模型和柔性模型中的成核速率几乎相同,这是因为在SF6柔性模型中冷凝热流入分子内振动的流量很小。为了确定当前工作中经典分子内振动模型的可靠性,我们使用与成核相同的MD模拟技术估算了气相中柔性UF6和柔性SF6分子的分子内振动弛豫时间。 MD模拟得到的分子内振动弛豫时间与UF6和SF6分子情况下的实验数据吻合良好。 (C)1998美国物理研究所。 [参考:24]

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