Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier

Fabrication of polymer nanocomposite usually requires an extensive high shear mixing and substantial energy input. However, it has been demonstrated that polyvinylpyrrolidone (PVP) and Montmorillonite clay nanoparticles (MMT), will spontaneously form a highly ordered nanocomposite film when applied...

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Main Authors: Maedeh Dabbaghianamiri, El-shazly M. Duraia, Gary W. Beall
Format: Article
Language:English
Published: Elsevier 2020-09-01
Series:Results in Materials
Subjects:
MMT
OTR
Online Access:http://www.sciencedirect.com/science/article/pii/S2590048X20300431
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spelling doaj-de8eb7cb69004e18bbeddddbfb3945d82020-11-25T03:57:26ZengElsevierResults in Materials2590-048X2020-09-017100101Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrierMaedeh Dabbaghianamiri0El-shazly M. Duraia1Gary W. Beall2Materials Science Engineering and Commercialization Program, Texas State University, TX, 78666, USA; Department of Chemistry and Biochemistry, Texas State University, TX, 78666, USADepartment of Chemistry and Biochemistry, Texas State University, TX, 78666, USA; Physics Department, Faculty of Science, Suez Canal University, Ismailia, Egypt; Corresponding author. Texas State University, Department of Chemistry and Biochemistry, 601 University Drive, San Marcos, 78666, TX, USA.Materials Science Engineering and Commercialization Program, Texas State University, TX, 78666, USA; Department of Chemistry and Biochemistry, Texas State University, TX, 78666, USAFabrication of polymer nanocomposite usually requires an extensive high shear mixing and substantial energy input. However, it has been demonstrated that polyvinylpyrrolidone (PVP) and Montmorillonite clay nanoparticles (MMT), will spontaneously form a highly ordered nanocomposite film when applied to a surface utilizing an inkjet printing technique. The as-synthesized nanocomposite prepared by this technique exhibits high barrier properties for oxygen gas. This self-assembly of MMT nanosheets inside the polymer matrix appears to be driven by entropic forces. In this work, an efficient gas barrier based on MMT and polyvinyl alcohol (PVOH) nanocomposite is reported. By adding MMT clay to our PVOH polymer, we solve the problem of sensitivity to humidity observed in pure PVOH films. PVOH is a well-known polymer that exhibits excellent gas barrier properties. However, PVOH is very sensitive to humidity and it must be protected by polymer overcoats such as polypropylene to exclude water. PVOH-MMT nanocomposite prepared in this work solves this problem without the need for polymer overcoating for protection. PVOH and MMT are spontaneously self-assembled into a nanocomposite film that exhibits extremely high oxygen barrier, high transparency, and low sensitivity to humidity which can largely be attributed to constrained polymer effects.http://www.sciencedirect.com/science/article/pii/S2590048X20300431Gas barrierPVOHMMTNanocompositeOTR
collection DOAJ
language English
format Article
sources DOAJ
author Maedeh Dabbaghianamiri
El-shazly M. Duraia
Gary W. Beall
spellingShingle Maedeh Dabbaghianamiri
El-shazly M. Duraia
Gary W. Beall
Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
Results in Materials
Gas barrier
PVOH
MMT
Nanocomposite
OTR
author_facet Maedeh Dabbaghianamiri
El-shazly M. Duraia
Gary W. Beall
author_sort Maedeh Dabbaghianamiri
title Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
title_short Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
title_full Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
title_fullStr Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
title_full_unstemmed Self-assembled Montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
title_sort self-assembled montmorillonite clay-poly vinyl alcohol nanocomposite as a safe and efficient gas barrier
publisher Elsevier
series Results in Materials
issn 2590-048X
publishDate 2020-09-01
description Fabrication of polymer nanocomposite usually requires an extensive high shear mixing and substantial energy input. However, it has been demonstrated that polyvinylpyrrolidone (PVP) and Montmorillonite clay nanoparticles (MMT), will spontaneously form a highly ordered nanocomposite film when applied to a surface utilizing an inkjet printing technique. The as-synthesized nanocomposite prepared by this technique exhibits high barrier properties for oxygen gas. This self-assembly of MMT nanosheets inside the polymer matrix appears to be driven by entropic forces. In this work, an efficient gas barrier based on MMT and polyvinyl alcohol (PVOH) nanocomposite is reported. By adding MMT clay to our PVOH polymer, we solve the problem of sensitivity to humidity observed in pure PVOH films. PVOH is a well-known polymer that exhibits excellent gas barrier properties. However, PVOH is very sensitive to humidity and it must be protected by polymer overcoats such as polypropylene to exclude water. PVOH-MMT nanocomposite prepared in this work solves this problem without the need for polymer overcoating for protection. PVOH and MMT are spontaneously self-assembled into a nanocomposite film that exhibits extremely high oxygen barrier, high transparency, and low sensitivity to humidity which can largely be attributed to constrained polymer effects.
topic Gas barrier
PVOH
MMT
Nanocomposite
OTR
url http://www.sciencedirect.com/science/article/pii/S2590048X20300431
work_keys_str_mv AT maedehdabbaghianamiri selfassembledmontmorilloniteclaypolyvinylalcoholnanocompositeasasafeandefficientgasbarrier
AT elshazlymduraia selfassembledmontmorilloniteclaypolyvinylalcoholnanocompositeasasafeandefficientgasbarrier
AT garywbeall selfassembledmontmorilloniteclaypolyvinylalcoholnanocompositeasasafeandefficientgasbarrier
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