Nanoconfined Polystyrene: A New Phase
软凝聚态物质
2007-05-23 v1
摘要
Transverse layering of molecular gyration spheres in spin-coated atactic polystyrene () films, for film thickness 4 ( = unperturbed gyration radius), causes an increase in free energy that does not follow the dependence of planar confinement and is explained by invoking a fixed-range, repulsive, modified P\"{o}schl-Teller intermolecular potential, its strength decreasing with increase in . Vacuum ultraviolet spectroscopy reveals a change in 'physical dimers' of adjacent pendant benzene rings of from 'oblique' to 'head-to-tail' configuration as film thickness goes from 9 to 2. This reduces cohesion by reducing dimer dipole moment. Thus a new phase of , the nanoconfined phase, ordered but with lower cohesion than bulk, is formed.
引用
@article{arxiv.cond-mat/0610138,
title = {Nanoconfined Polystyrene: A New Phase},
author = {Sudeshna Chattopadhyay and Alokmay Datta and Avijit Das and Angelo Giglia and Stefano Nannarone and Nicola Mahne},
journal= {arXiv preprint arXiv:cond-mat/0610138},
year = {2007}
}
备注
3 figures