Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil
The reported work was focused on sol–gel-derived organically modified and fluorinated silica coatings deposited on elastic polymeric foil. The structure and topography of the coatings were tested by infrared spectroscopy and microscopic studies. The functional properties were determined using therma...
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doaj-87f4a8372b794d259930193f9bfe94162021-06-01T00:06:10ZengMDPI AGCoatings2079-64122021-05-011157357310.3390/coatings11050573Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric FoilKamila Startek0Anna Szczurek1Thi Ngoc Lam Tran2Justyna Krzak3Alicja Bachmatiuk4Anna Lukowiak5Łukasiewicz Research Network—PORT Polish Center for Technology Development, Stablowicka 147, 50-066 Wroclaw, PolandDepartment of Mechanics, Materials and Biomedical Engineering, Wroclaw University of Science and Technology, Smoluchowskiego 25, 50-370 Wroclaw, PolandIFN-CNR CSMFO Lab. and FBK Photonics Unit, Via alla Cascata 56/C Povo, 38100 Trento, ItalyDepartment of Mechanics, Materials and Biomedical Engineering, Wroclaw University of Science and Technology, Smoluchowskiego 25, 50-370 Wroclaw, PolandŁukasiewicz Research Network—PORT Polish Center for Technology Development, Stablowicka 147, 50-066 Wroclaw, PolandInstitute of Low Temperature and Structure Research, PAS, Okolna 2, 50-422 Wroclaw, PolandThe reported work was focused on sol–gel-derived organically modified and fluorinated silica coatings deposited on elastic polymeric foil. The structure and topography of the coatings were tested by infrared spectroscopy and microscopic studies. The functional properties were determined using thermal analysis, surface analysis, and oxygen permeability tests. The barrier feature of the investigated materials against oxygen was correlated with the properties of the coatings. The hybrid (organic–inorganic) structure of the coatings was proven, demonstrating the presence of a silica network modified with alkyl and fluoroalkyl groups since precursors with the isooctyl group or different lengths of the fluoroalkyl chains were used for the syntheses. The coatings were free of defects and had a smooth surface except for the sample containing the longest fluoroalkyl chain (perfluorododecyl group), which showed a wrinkle-like surface. The hydrophobic character of the coatings increased, whereas the oxygen permeation coefficient values decreased (reaching a fourfold lower coefficient in comparison to the bare substrate) with a higher content of the fluorinated carbon atoms in the structure. The results were enriched by the information from the thermomechanical analysis as well as nanoindentation and scratch tests giving values of the glass transition temperature, thermal expansion coefficient, coatings adhesion, and hardness of the investigated systems.https://www.mdpi.com/2079-6412/11/5/573sol–gelfluorinated coatingpolyethylene terephthalateflexiblehydrophobicoxygen permeability |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kamila Startek Anna Szczurek Thi Ngoc Lam Tran Justyna Krzak Alicja Bachmatiuk Anna Lukowiak |
spellingShingle |
Kamila Startek Anna Szczurek Thi Ngoc Lam Tran Justyna Krzak Alicja Bachmatiuk Anna Lukowiak Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil Coatings sol–gel fluorinated coating polyethylene terephthalate flexible hydrophobic oxygen permeability |
author_facet |
Kamila Startek Anna Szczurek Thi Ngoc Lam Tran Justyna Krzak Alicja Bachmatiuk Anna Lukowiak |
author_sort |
Kamila Startek |
title |
Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil |
title_short |
Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil |
title_full |
Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil |
title_fullStr |
Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil |
title_full_unstemmed |
Structural and Functional Properties of Fluorinated Silica Hybrid Barrier Layers on Flexible Polymeric Foil |
title_sort |
structural and functional properties of fluorinated silica hybrid barrier layers on flexible polymeric foil |
publisher |
MDPI AG |
series |
Coatings |
issn |
2079-6412 |
publishDate |
2021-05-01 |
description |
The reported work was focused on sol–gel-derived organically modified and fluorinated silica coatings deposited on elastic polymeric foil. The structure and topography of the coatings were tested by infrared spectroscopy and microscopic studies. The functional properties were determined using thermal analysis, surface analysis, and oxygen permeability tests. The barrier feature of the investigated materials against oxygen was correlated with the properties of the coatings. The hybrid (organic–inorganic) structure of the coatings was proven, demonstrating the presence of a silica network modified with alkyl and fluoroalkyl groups since precursors with the isooctyl group or different lengths of the fluoroalkyl chains were used for the syntheses. The coatings were free of defects and had a smooth surface except for the sample containing the longest fluoroalkyl chain (perfluorododecyl group), which showed a wrinkle-like surface. The hydrophobic character of the coatings increased, whereas the oxygen permeation coefficient values decreased (reaching a fourfold lower coefficient in comparison to the bare substrate) with a higher content of the fluorinated carbon atoms in the structure. The results were enriched by the information from the thermomechanical analysis as well as nanoindentation and scratch tests giving values of the glass transition temperature, thermal expansion coefficient, coatings adhesion, and hardness of the investigated systems. |
topic |
sol–gel fluorinated coating polyethylene terephthalate flexible hydrophobic oxygen permeability |
url |
https://www.mdpi.com/2079-6412/11/5/573 |
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