Narros A, Arbe A, Alvarez F, Colmenero J, Richter D
Departamento de Física de Materiales UPV/EHU, Apartado 1072, 20080 San Sebastián, Spain.
J Chem Phys. 2008 Jun 14;128(22):224905. doi: 10.1063/1.2937733.
We present fully atomistic molecular dynamics simulations on 1,4-polybutadiene in a wide temperature range from 200 to 280 K, i.e., in the region where the alpha- and beta-relaxations merge and above. A big computational effort has been performed-especially for the lowest temperatures investigated-to extend the simulation runs to very long times (up to 1 mus for 200 K). The simulated sample has been carefully validated by using previous neutron scattering data on the real sample with similar microstructure. Inspecting the trajectories of the different hydrogens in real space, we have observed a heterogeneous dynamical behavior (each kind of hydrogen moves in a different way) with signatures of combined hopping and diffusive motions in the whole range investigated. The application of a previously proposed model [Colmenero et al., Europhys. Lett. 71, 262 (2005)] is successful and a characterization of the local motions and diffusion is possible. The comparison of our results to those reported in the literature provides a consistent scenario for polybutadiene dynamics and puts into a context the different experimental observations. We also discuss the impact of the hopping processes on the observation and interpretation of experimentally accessible magnitudes and the origin of the deviations from Gaussian behavior in this system.
我们展示了在200至280K的宽温度范围内对1,4-聚丁二烯进行的全原子分子动力学模拟,即处于α和β弛豫合并及以上的区域。我们付出了巨大的计算努力——特别是对于所研究的最低温度——将模拟运行时间延长至非常长的时间(200K时长达1微秒)。通过使用先前关于具有相似微观结构的真实样品的中子散射数据,对模拟样品进行了仔细验证。通过检查实空间中不同氢原子的轨迹,我们观察到了一种非均匀动力学行为(每种氢原子以不同方式运动),在所研究的整个范围内都有跳跃和扩散运动相结合的特征。应用先前提出的模型[科尔梅内罗等人,《欧洲物理快报》71, 262 (2005)]是成功的,并且可以对局部运动和扩散进行表征。将我们的结果与文献中报道的结果进行比较,为聚丁二烯动力学提供了一个一致的情况,并将不同的实验观察结果置于相应背景中。我们还讨论了跳跃过程对实验可获取量的观测和解释的影响,以及该系统中偏离高斯行为的起源。