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Dynamics of poly(ethylene oxide) in a blend with poly(methyl methacrylate): A quasielastic neutron scattering and molecular dynamics simulation study

机译:聚环氧乙烷与聚甲基丙烯酸甲酯共​​混的动力学:准弹性中子散射和分子动力学模拟研究

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摘要

In this paper, we have addressed the question of the dynamic miscibility in a blend characterized by very different glass-transition temperatures, T-g, for the components: poly(ethylene oxide) and poly(methyl methacrylate) (PEO/PMMA). The combination of quasielastic neutron scattering with isotopic labeling and fully atomistic molecular dynamics simulations has allowed us to selectively investigate the dynamics of the two components in the picosecond-10 nanoseconds scale at temperatures close and above the T-g of the blend. The main focus was on the PEO component, i.e., that of the lowest T-g, but first we have characterized the dynamics of the other component in the blend and of the pure PEO homopolymer as reference. In the region investigated, the dynamics of PMMA in the blend is strongly affected by the alpha-methyl rotation; an additional process detected in the experimental window 65 K above the blend-T-g can be identified as the merged alpha beta process of this component that shows strong deviations from Gaussian behavior. On the other hand, pure PEO displays entropy driven dynamics up to very large momentum transfers. Such kind of motion seems to freeze when the PEO chains are in the blend. There, we have directly observed a very heterogeneous and moreover confined dynamics for the PEO component. The presence of the hardly moving PMMA matrix leads to the creation of little pockets of mobility where PEO can move. The characteristic size of such confined islands of mobility might be estimated to be of approximate to 1 nm. These findings are corroborated by the simulation study, which has been an essential support and guide in our data analysis procedure.
机译:在本文中,我们已经解决了混合料的动态混溶性问题,该混合料的特征在于以下组分的玻璃化转变温度T-g非常不同:聚环氧乙烷和聚甲基丙烯酸甲酯(PEO / PMMA)。准弹性中子散射与同位素标记以及完全原子的分子动力学模拟相结合,使我们能够选择性地研究皮秒中10纳秒范围内两种组分在接近和高于共混物T-g的温度下的动力学。主要关注的是PEO组分,即最低的T-g,但首先我们表征了共混物中其他组分的动力学和纯PEO均聚物作为参考。在所研究的区域中,共混物中PMMA的动力学受到α-甲基旋转的强烈影响;可以将在混合物T-g上方65 K的实验窗口中检测到的其他过程识别为该组件的合并的alpha beta过程,该过程显示出与高斯行为的强烈偏差。另一方面,纯PEO会显示熵驱动的动力学,直至非常大的动量传递。当PEO链处于混合状态时,这种运动似乎停止。在那里,我们直接观察到了PEO组件非常异质且局限的动力学。难以移动的PMMA矩阵的存在导致PEO可以移动的移动性小口袋的产生。这种受限的迁移率岛的特征尺寸可以估计为大约1nm。仿真研究证实了这些发现,这已成为我们数据分析过程中必不可少的支持和指南。

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