Massa Carlo Andrea, Puosi Francesco, Leporini Dino
Istituto per i Processi Chimico-Fisici-Consiglio Nazionale delle Ricerche (IPCF-CNR), Via G Moruzzi 1, 56124 Pisa, Italy.
Istituto Nazionale di Fisica Nucleare, Largo B. Pontecorvo 3, 56127 Pisa, Italy.
Polymers (Basel). 2022 Dec 19;14(24):5560. doi: 10.3390/polym14245560.
A polymer model exhibiting heterogeneous Johari−Goldstein (JG) secondary relaxation is studied by extensive molecular-dynamics simulations of states with different temperature and pressure. Time−temperature−pressure superposition of the primary (segmental) relaxation is evidenced. The time scales of the primary and the JG relaxations are found to be highly correlated according to a power law. The finding agrees with key predictions of the Coupling Model (CM) accounting for the decay in a correlation function due to the relaxation and diffusion of interacting systems. Nonetheless, the exponent of the power law, even if it is found in the range predicted by CM (0<ξ<1), deviates from the expected one. It is suggested that the deviation could depend on the particular relaxation process involved in the correlation function and the heterogeneity of the JG process.
通过对不同温度和压力状态进行广泛的分子动力学模拟,研究了一种呈现非均匀乔哈里 - 戈尔茨坦(JG)二级弛豫的聚合物模型。证实了一级(链段)弛豫的时间 - 温度 - 压力叠加。发现一级弛豫和JG弛豫的时间尺度根据幂律高度相关。这一发现与耦合模型(CM)的关键预测一致,该模型解释了由于相互作用系统的弛豫和扩散导致相关函数的衰减。尽管如此,幂律的指数即使在CM预测的范围内(0<ξ<1),也与预期值存在偏差。有人认为,这种偏差可能取决于相关函数中涉及的特定弛豫过程以及JG过程的非均匀性。