Two relaxation mechanisms for rejuvenation of stable polymer glass

Fuente: arXiv
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Hauptverfasser: Karimi, Saba, Yin, Junjie, Forrest, James A.
Format: Preprint
Veröffentlicht: 2024
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author Karimi, Saba
Yin, Junjie
Forrest, James A.
author_facet Karimi, Saba
Yin, Junjie
Forrest, James A.
contents We report on the rejuvenation of thin films of polystyrene (PS) as they are heated from stable glassy states - prepared either through vapour deposition or physical aging. For films with thickness $h \gtrsim 200$ nm, the rejuvenation of vapour deposited stable PS glass films follow behaviour well-documented for other stable glasses. For films with thickness $h \lesssim 160$nm the behaviour of the vapour deposited films becomes more complicated. This behaviour is characterized for different film thicknesses. The results are compared with vapour deposited films that are aged after rejuvenation or spincast and aged. Collectively, the results of these studies strongly suggest two distinct mechanisms that can result in rejuvenation, and hence two distinct relaxation processes that can couple to the material density. The two physical mechanisms can provide insight into poorly understood or apparently contradictory aspects of $T_g$ measurements in thin PS films.
format Preprint
id arxiv_https___arxiv_org_abs_2408_11783
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Two relaxation mechanisms for rejuvenation of stable polymer glass
Karimi, Saba
Yin, Junjie
Forrest, James A.
Soft Condensed Matter
Materials Science
We report on the rejuvenation of thin films of polystyrene (PS) as they are heated from stable glassy states - prepared either through vapour deposition or physical aging. For films with thickness $h \gtrsim 200$ nm, the rejuvenation of vapour deposited stable PS glass films follow behaviour well-documented for other stable glasses. For films with thickness $h \lesssim 160$nm the behaviour of the vapour deposited films becomes more complicated. This behaviour is characterized for different film thicknesses. The results are compared with vapour deposited films that are aged after rejuvenation or spincast and aged. Collectively, the results of these studies strongly suggest two distinct mechanisms that can result in rejuvenation, and hence two distinct relaxation processes that can couple to the material density. The two physical mechanisms can provide insight into poorly understood or apparently contradictory aspects of $T_g$ measurements in thin PS films.
title Two relaxation mechanisms for rejuvenation of stable polymer glass
topic Soft Condensed Matter
Materials Science
url https://arxiv.org/abs/2408.11783