Protective Properties of a Microstructure Composed of Barrier Nanostructured Organics and SiOx Layers Deposited on a Polymer Matrix

Author:

Prikryl Radek,Otrisal Pavel,Obsel Vladimir,Svorc LubomírORCID,Karkalic Radovan,Buk Jan

Abstract

The SiOx barrier nanocoatings have been prepared on selected polymer matrices to increase their resistance against permeation of toxic substances. The aim has been to find out whether the method of vacuum plasma deposition of SiOx barrier nanocoatings on a polyethylene terephthalate (PET) foil used by Aluminium Company of Canada (ALCAN) company (ALCAN Packaging Kreuzlingen AG (SA/Ltd., Kreuzlingen, Switzerland) within the production of CERAMIS® packaging materials with barrier properties can also be used to increase the resistance of foils from other polymers against the permeation of organic solvents and other toxic liquids. The scanning electron microscopy (SEM) microstructure of SiOx nanocoatings prepared by thermal deposition from SiO in vacuum by the Plasma Assisted Physical Vapour Deposition (PA-PVD) method or vacuum deposition of hexamethyldisiloxane (HMDSO) by the Plasma-enhanced chemical vapour deposition (PECVD) method have been studied. The microstructure and behavior of samples when exposed to a liquid test substance in relation to the barrier properties is described.

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference32 articles.

1. Dielectric-Barrier Discharges. Principle and Applications

2. A new colorimetric assay for determination of selected toxic vapours and liquids permeation through barrier materials using the minitest device;Otrisal;Rev. Plast.,2017

3. Modulation of ionizing radiation-induced effects by NU7441, KU55933 and VE821 in peripheral blood lymphocytes

4. Chemical and physical evaluation of hydrophobic pp-HMDSO layers deposited by plasma polymerization at atmospheric pressure;Krumpolec;Chem. Listy,2012

5. Dynamic adsorption characteristics of thin layered activated charcoal materials used in chemical protective overgarments;Radovan;Indian J. Fibre Text. Res.,2016

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