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Authors Schmachtenberg, E. ; Costa, F. R. ; Göbel, S.
Title Microwave assisted HMDSO/oxygen plasma coated polyethylene terephthalate films: Effects of process parameters and uniaxial strain on gas barrier properties, surface morphology, and chemical composition
Date 15.02.2006
Number 41792
Abstract The coating structure and barrier property relation of coated PET films is of high interest for understanding the difference between predicted and actual barrier performance of coated PET films. In this work the chemical and morphological structure of HMDSO coatings generated with and without oxygen in a microwave plasma has been investigated with XPS and AFM analysis. These results were correlated with oxygen permeation measurements at different strain rates and temperatures. The results show that with a more glass-like chemical composition the barrier property is improved. The growth of the coatings takes place in a columnar manner and the interfaces between the columns seem to be the low energy passages for the permeation, which cause the difference between predicted and actual barrier performance. When the coatings are strained the barrier fails at a strain higher than 1%. Cracks occur and with higher strain rates the number of cracks increases. Cracking takes place perpendicular to the strain direction and at the interfaces of the columns of the coating. © 2005 Wiley Periodicals, Inc. J Appl Polym Sci 99: 1485–1495, 2006
Publisher Journal of Applied Polymer Science
Wikidata
Citation Journal of Applied Polymer Science 99 (2006) 1485-1495
DOI https://doi.org/10.1002/app.21266
Tags plasma polymerization gas permeation structure–property relations thin films atomic-force microscopy coatings permeation deposition oxygen tetramethoxysilane transport mixture

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