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结合分子动力学模拟和中子散射实验对聚环氧乙烷动力学的研究。

Study of the dynamics of poly(ethylene oxide) by combining molecular dynamic simulations and neutron scattering experiments.

作者信息

Brodeck M, Alvarez F, Arbe A, Juranyi F, Unruh T, Holderer O, Colmenero J, Richter D

机构信息

Institut fur Festkörperforschung, Forschungszentrum Jülich GmbH, Jülich, Germany.

出版信息

J Chem Phys. 2009 Mar 7;130(9):094908. doi: 10.1063/1.3077858.

Abstract

We performed quasielastic neutron scattering experiments and atomistic molecular dynamics simulations on a poly(ethylene oxide) (PEO) homopolymer system above the melting point. The excellent agreement found between both sets of data, together with a successful comparison with literature diffraction results, validates the condensed-phase optimized molecular potentials for atomistic simulation studies (COMPASS) force field used to produce our dynamic runs and gives support to their further analysis. This provided direct information on magnitudes which are not accessible from experiments such as the radial probability distribution functions of specific atoms at different times and their moments. The results of our simulations on the H-motions and different experiments indicate that in the high-temperature range investigated the dynamics is Rouse-like for Q-values below approximately 0.6 A(-1). We then addressed the single chain dynamic structure factor with the simulations. A mode analysis, not possible directly experimentally, reveals the limits of applicability of the Rouse model to PEO. We discuss the possible origins for the observed deviations.

摘要

我们对高于熔点的聚环氧乙烷(PEO)均聚物体系进行了准弹性中子散射实验和原子分子动力学模拟。两组数据之间的出色吻合,以及与文献衍射结果的成功对比,验证了用于生成我们动力学模拟的凝聚相优化分子势(COMPASS)力场,并为其进一步分析提供了支持。这提供了关于一些量的直接信息,这些量是实验无法获取的,比如特定原子在不同时刻的径向概率分布函数及其矩。我们对H运动的模拟结果和不同实验表明,在所研究的高温范围内,对于Q值低于约0.6 Å⁻¹ 的情况,动力学呈类Rouse型。然后我们用模拟研究了单链动态结构因子。一种无法直接通过实验进行的模式分析揭示了Rouse模型对PEO的适用范围。我们讨论了观察到的偏差的可能来源。

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