Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites

In this study, a novel alumina-covered graphene oxide/polyimide (AlGO/PI) nanocomposite was developed as an anticorrosion coating material. The hydroxyl groups on GO reacted with aluminum isopropoxide via a sol-gel process to yield AlGO nanosheets. The characterization and structure were confirmed b...

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Main Authors: G-H. Lai, T-C. Huang, I-H. Tseng, B-S. Huang, T-I. Yang, M-H. Tsai
Format: Article
Language:English
Published: Budapest University of Technology 2019-09-01
Series:eXPRESS Polymer Letters
Subjects:
Online Access:http://www.expresspolymlett.com/letolt.php?file=EPL-0009887&mi=cd
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spelling doaj-3051b5ebd2e642108cb51b0ca09e7c5c2020-11-25T01:07:23ZengBudapest University of Technology eXPRESS Polymer Letters1788-618X2019-09-0113977278410.3144/expresspolymlett.2019.66Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocompositesG-H. LaiT-C. HuangI-H. TsengB-S. HuangT-I. YangM-H. TsaiIn this study, a novel alumina-covered graphene oxide/polyimide (AlGO/PI) nanocomposite was developed as an anticorrosion coating material. The hydroxyl groups on GO reacted with aluminum isopropoxide via a sol-gel process to yield AlGO nanosheets. The characterization and structure were confirmed by Fourier transform infrared spectrometry, X-ray photoelectron spectroscopy, field emission scanning electron microscopy, and field emission transmission electron microscopy. Subsequently, GO and AlGO were incorporated into a PI matrix, leading to the formation of GO/PI and AlGO/PI nanocomposites. Well-dispersed AlGO nanosheets in the PI matrix acted as effective additives to enhance the water barrier properties of GO/PI (58 g/(m2·day)) and AlGO/PI (43 g/(m2·day)) coatings. Most importantly, the resultant AlGO/PI films exhibited excellent optical transparency (>75%) and anticorrosion properties. Electrochemical measurements of corrosion potential, polarization resistance, and corrosion current as well as electrochemical impedance spectroscopy confirmed that the AlGO/PI nanocomposites exhibited better anticorrosion properties than GO/PI nanocomposites. This is likely because the insulating layer of alumina on GO can isolate the charge transfer pathway between GO and the metal substrates, leading to improved anticorrosion behavior.http://www.expresspolymlett.com/letolt.php?file=EPL-0009887&mi=cdPolymer compositesPolyimideAlumina-covered graphene oxideAnticorrosion
collection DOAJ
language English
format Article
sources DOAJ
author G-H. Lai
T-C. Huang
I-H. Tseng
B-S. Huang
T-I. Yang
M-H. Tsai
spellingShingle G-H. Lai
T-C. Huang
I-H. Tseng
B-S. Huang
T-I. Yang
M-H. Tsai
Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
eXPRESS Polymer Letters
Polymer composites
Polyimide
Alumina-covered graphene oxide
Anticorrosion
author_facet G-H. Lai
T-C. Huang
I-H. Tseng
B-S. Huang
T-I. Yang
M-H. Tsai
author_sort G-H. Lai
title Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
title_short Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
title_full Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
title_fullStr Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
title_full_unstemmed Transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
title_sort transparency anticorrosion coatings prepared from alumina-covered graphene oxide/polyimide nanocomposites
publisher Budapest University of Technology
series eXPRESS Polymer Letters
issn 1788-618X
publishDate 2019-09-01
description In this study, a novel alumina-covered graphene oxide/polyimide (AlGO/PI) nanocomposite was developed as an anticorrosion coating material. The hydroxyl groups on GO reacted with aluminum isopropoxide via a sol-gel process to yield AlGO nanosheets. The characterization and structure were confirmed by Fourier transform infrared spectrometry, X-ray photoelectron spectroscopy, field emission scanning electron microscopy, and field emission transmission electron microscopy. Subsequently, GO and AlGO were incorporated into a PI matrix, leading to the formation of GO/PI and AlGO/PI nanocomposites. Well-dispersed AlGO nanosheets in the PI matrix acted as effective additives to enhance the water barrier properties of GO/PI (58 g/(m2·day)) and AlGO/PI (43 g/(m2·day)) coatings. Most importantly, the resultant AlGO/PI films exhibited excellent optical transparency (>75%) and anticorrosion properties. Electrochemical measurements of corrosion potential, polarization resistance, and corrosion current as well as electrochemical impedance spectroscopy confirmed that the AlGO/PI nanocomposites exhibited better anticorrosion properties than GO/PI nanocomposites. This is likely because the insulating layer of alumina on GO can isolate the charge transfer pathway between GO and the metal substrates, leading to improved anticorrosion behavior.
topic Polymer composites
Polyimide
Alumina-covered graphene oxide
Anticorrosion
url http://www.expresspolymlett.com/letolt.php?file=EPL-0009887&mi=cd
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