Fukao Koji, Terasawa Takehide, Oda Yuto, Nakamura Kenji, Tahara Daisuke
Department of Physics, Ritsumeikan University, Noji-Higashi 1-1-1, Kusatsu 525-8577, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Oct;84(4 Pt 1):041808. doi: 10.1103/PhysRevE.84.041808. Epub 2011 Oct 24.
The glass transition dynamics of stacked thin films of polystyrene and poly(2-chlorostyrene) were investigated using differential scanning calorimetry and dielectric relaxation spectroscopy. The glass transition temperature T(g) of as-stacked thin polystyrene films has a strong depression from that of the bulk samples. However, after annealing at high temperatures above T(g), the stacked thin films exhibit glass transition at a temperature almost equal to the T(g) of the bulk system. The α-process dynamics of stacked thin films of poly(2-chlorostyrene) show a time evolution from single-thin-film-like dynamics to bulk-like dynamics during the isothermal annealing process. The relaxation rate of the α process becomes smaller with increase in the annealing time. The time scale for the evolution of the α dynamics during the annealing process is very long compared with that for the reptation dynamics. At the same time, the temperature dependence of the relaxation time for the α process changes from Arrhenius-like to Vogel-Fulcher-Tammann dependence with increase of the annealing time. The fragility index increases and the distribution of the α-relaxation times becomes smaller with increase in the annealing time for isothermal annealing. The observed change in the α process is discussed with respect to the interfacial interaction between the thin layers of stacked thin polymer films.
采用差示扫描量热法和介电弛豫谱研究了聚苯乙烯和聚(2-氯苯乙烯)堆叠薄膜的玻璃化转变动力学。堆叠的聚苯乙烯薄膜的玻璃化转变温度T(g)与本体样品相比有很大程度的降低。然而,在高于T(g)的高温下退火后,堆叠薄膜在几乎等于本体系统T(g)的温度下出现玻璃化转变。聚(2-氯苯乙烯)堆叠薄膜的α过程动力学在等温退火过程中呈现出从类似单薄膜动力学向类似本体动力学的时间演化。随着退火时间的增加,α过程的弛豫速率变小。与链段蠕动动力学相比,退火过程中α动力学演化的时间尺度非常长。同时,随着退火时间的增加,α过程弛豫时间的温度依赖性从类似阿仑尼乌斯型转变为类似沃格尔-富尔彻-塔曼型。对于等温退火,随着退火时间的增加,脆性指数增加,α弛豫时间的分布变小。针对堆叠聚合物薄膜薄层之间的界面相互作用,讨论了观察到的α过程的变化。