Length Scale of Correlated Dynamics in Ultra-thin Molecular Glasses
Abstract
Physical vapor deposition (PVD) is widely used in manufacturing ultra-thin layers of amorphous organic solids. Here, we demonstrate that these films exhibit a sharp transition from glassy solid to liquid-like behavior with thickness below 30 nm. This liquid-like behavior persists even at temperatures well below the glass transition temperature, T. The enhanced dynamics in these films can produce large scale morphological features during PVD and lead to a dewetting instability in films held at temperatures as low as T-35 K. We measure the effective viscosity of organic glass films by monitoring the dewetting kinetics. These measurements combined with cooling rate-dependent T measurements show that the apparent activation barrier for rearrangement decreases sharply in films thinner than 30 nm. These observations suggest long-range facilitation of dynamics induced by the free surface, with dramatic effects on the properties of nano-scale amorphous materials.
Keywords
Cite
@article{arxiv.1603.07244,
title = {Length Scale of Correlated Dynamics in Ultra-thin Molecular Glasses},
author = {Yue Zhang and Ethan Glor and Mu Li and Tianyi Liu and kareem Wahid and William Zhang and Robert Riggleman and Zahra Fakhraai},
journal= {arXiv preprint arXiv:1603.07244},
year = {2016}
}
Comments
5 pages, 4 figures