Jain Tushar S, de Pablo Juan J
University of Wisconsin-Madison, Department of Chemical and Biological Engineering, Madison, Wisconsin 53706, USA.
J Chem Phys. 2004 May 15;120(19):9371-5. doi: 10.1063/1.1689952.
We have performed a normal-mode analysis on a glass forming polymer system for bulk and free-standing film geometries prepared under identical conditions. It is found that for free-standing film glasses, the normal-mode spectrum exhibits significant differences from the bulk glass with the appearance of an additional low-frequency peak and a higher intensity at the Boson peak frequency. A detailed eigenvector analysis shows that the low-frequency peak corresponds to a shear-horizontal mode which is predicted by continuum theory. The peak at higher frequency (Boson peak) corresponds to motions that are correlated over a length scale of approximately twice the interaction site diameter. These observations shed some light on the microscopic dynamics of glass formers, and help explain decreasing fragility that arises with decreasing thickness in thin films.
我们对在相同条件下制备的块状和独立薄膜几何结构的玻璃形成聚合物体系进行了简正模式分析。结果发现,对于独立薄膜玻璃,简正模式光谱与块状玻璃有显著差异,出现了一个额外的低频峰,并且在玻色子峰频率处强度更高。详细的本征向量分析表明,低频峰对应于连续介质理论所预测的水平剪切模式。较高频率的峰(玻色子峰)对应于在大约两倍相互作用位点直径的长度尺度上相关的运动。这些观察结果为玻璃形成体的微观动力学提供了一些线索,并有助于解释薄膜中随着厚度减小而出现的脆性降低现象。