论文标题

蒸气沉积的聚苯乙烯玻璃的表面和散装松弛

Surface and Bulk Relaxation of Vapour-Deposited Polystyrene Glasses

论文作者

Yin, Junjie, Pedersen, Christian, Thees, Michael, Carlson, Andreas, Salez, Thomas, Forrest, James A

论文摘要

我们已经研究了聚苯乙烯蒸气沉积玻璃膜表面对表面引入金纳米颗粒的液体样反应。对两种摄影膜的时间和温度的函数,测量了聚合物材料的堆积,以及已恢复活力的膜,成为从平衡液体冷却的正常眼镜。毛细血管驱动的表面流的特征能力定律很好地描述了表面轮廓的时间演化。在所有情况下,与散装相比,相比膜和复兴膜的表面演变都得到了增强,并且不容易区分彼此。发现根据表面进化确定的测量弛豫时间的温度依赖性在定量上与高分子量状发质质子聚苯乙烯的类似研究相当。与玻璃薄膜方程的数值溶液进行比较提供了表面迁移率的定量估计。对于足够接近玻璃转换温度的温度,还测量并将颗粒嵌入用作散装动力学探针,尤其是散装粘度。

We have studied the liquid-like response of the surface of vapour-deposited glassy films of polystyrene to the introduction of gold nanoparticles on the surface. The build-up of polymer material was measured as a function of time and temperature for both as-deposited films, as well as films that have been rejuvenated to become normal glasses cooled from the equilibrium liquid. The temporal evolution of the surface profile is well described by the characteristic power law of capillary-driven surface flows. In all cases, the surface evolution of the as-deposited films and the rejuvenated films are enhanced compared to bulk and are not easily distinguishable from each other. The temperature dependence of the measured relaxation times determined from the surface evolution is found to be quantitatively comparable to similar studies for high molecular weight spincast polystyrene. Comparisons to numerical solutions of the glassy thin film equation provide quantitative estimates of the surface mobility. For temperatures sufficiently close to the glass-transition temperature, particle embedding is also measured and used as a probe of bulk dynamics, and in particular bulk viscosity.

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