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Modeling the collective relaxation time of glass-forming polymers at intermediate length scales: Application to polyisobutylene

机译:在中等长度尺度上模拟玻璃形成聚合物的集体弛豫时间:在聚异丁烯中的应用

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摘要

In a recent paper [V. N. Novikov, K. S. Schweizer, and A. P. Sokolov, J. Chem. Phys. 138, 164508 (2013)]10.1063/1.4802771 a simple analytical ansatz has been proposed to describe the momentum transfer (Q) dependence of the collective relaxation time of glass-forming systems in a wide Q-range covering the region of the first maximum of the static structure factor S(Q) and the so-called intermediate length scale regime. In this work we have generalized this model in order to deal with glass-forming systems where the atomic diffusive processes are sub-linear in nature. This is for instance the case of glass-forming polymers. The generalized expression considers a sub-linear jump-diffusion model and reduces to the expression previously proposed for normal diffusion. The generalized ansatz has been applied to the experimental results of the Q- and temperature-dependence of polyisobutylene (PIB), which were previously published. To reduce the number of free parameters of the model to only one, we have taken advantage of atomistic molecular dynamics simulations of PIB properly validated by neutron scattering results. The model perfectly describes the experimental results capturing both, Q- and temperature-dependences. Moreover, the model also reproduces the experimental Q-dependence of the effective activation energy of the collective relaxation time in the temperature range of observation. This non-trivial result gives additional support to the way the crossover between two different relaxation mechanisms of density fluctuations is formulated in the model. © 2013 AIP Publishing LLC.
机译:在最近的一篇论文中N.Novikov,K.S.Schweizer和A.P.Sokolov,J.Chem。物理138,164508(2013)] 10.1063 / 1.4802771提出了一种简单的分析ansatz,用于描述在覆盖Q值的第一个最大值的宽Q范围内玻璃形成系统的集体弛豫时间的动量传递(Q)依赖性。静态结构因子S(Q)和所谓的中间长度尺度体系。在这项工作中,我们对模型进行了概括,以便处理原子扩散过程本质上是亚线性的玻璃形成系统。例如形成玻璃的聚合物就是这种情况。广义表达式考虑了亚线性跳跃扩散模型,并简化为先前建议用于正态扩散的表达式。广义ansatz已应用于先前已发表的聚异丁烯(PIB)的Q和温度依赖性的实验结果。为了将模型的自由参数数量减少到一个,我们利用了PIB的原子分子动力学模拟,并通过中子散射结果对其进行了正确验证。该模型完美描述了捕获Q和温度相关性的实验结果。此外,该模型还再现了观测温度范围内集体弛豫时间的有效活化能的实验Q依赖性。这个非同寻常的结果为模型中两个不同的密度波动松弛机制之间的交叉方法提供了额外的支持。 ©2013 AIP Publishing LLC。

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