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High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †

Graphene-reinforced tung oil (TO)-based unsaturated polyester nanocomposites were prepared via in situ melt polycondensation intergrated with Diels–Alder addition. Functionalized graphene sheets derived from graphene oxide (GO) were then extracted from the obtained nanocomposites and carefully chara...

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Autores principales: Liu, Chengguo, Wang, Cuina, Tang, Jijun, Zhang, Jing, Shang, Qianqian, Hu, Yun, Wang, Hongxiao, Wu, Qiong, Zhou, Yonghong, Lei, Wen, Liu, Zengshe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401922/
https://www.ncbi.nlm.nih.gov/pubmed/30961213
http://dx.doi.org/10.3390/polym10111288
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author Liu, Chengguo
Wang, Cuina
Tang, Jijun
Zhang, Jing
Shang, Qianqian
Hu, Yun
Wang, Hongxiao
Wu, Qiong
Zhou, Yonghong
Lei, Wen
Liu, Zengshe
author_facet Liu, Chengguo
Wang, Cuina
Tang, Jijun
Zhang, Jing
Shang, Qianqian
Hu, Yun
Wang, Hongxiao
Wu, Qiong
Zhou, Yonghong
Lei, Wen
Liu, Zengshe
author_sort Liu, Chengguo
collection PubMed
description Graphene-reinforced tung oil (TO)-based unsaturated polyester nanocomposites were prepared via in situ melt polycondensation intergrated with Diels–Alder addition. Functionalized graphene sheets derived from graphene oxide (GO) were then extracted from the obtained nanocomposites and carefully characterized. Furthermore, dispersion state of the graphene nanosheets in the cured polymer composites and ultimate properties of the resultant biobased nanocomposites were investigated. Mechanical and thermal properties of the TO-based unsaturated polyester resin (UPR) were greatly improved by the incorporation of GO. For example, at the optimal GO content (only 0.10 wt %), the obtained biobased nanocomposite showed tensile strength and modulus of 43.2 MPa and 2.62 GPa, and T(g) of 105.2 °C, which were 159%, 191%, and 49.4% higher than those of the unreinforced UPR/TO resin, respectively. Compared to neat UPR, the biobased UPR nanocomposite with 0.1 wt % of GO even demonstrated superior comprehensive properties (comparable stiffness and T(g), while better toughness and thermal stability). Therefore, the developed biobased UPR nanocomposites are very promising to be applied in structural plastics.
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spelling pubmed-64019222019-04-02 High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene † Liu, Chengguo Wang, Cuina Tang, Jijun Zhang, Jing Shang, Qianqian Hu, Yun Wang, Hongxiao Wu, Qiong Zhou, Yonghong Lei, Wen Liu, Zengshe Polymers (Basel) Article Graphene-reinforced tung oil (TO)-based unsaturated polyester nanocomposites were prepared via in situ melt polycondensation intergrated with Diels–Alder addition. Functionalized graphene sheets derived from graphene oxide (GO) were then extracted from the obtained nanocomposites and carefully characterized. Furthermore, dispersion state of the graphene nanosheets in the cured polymer composites and ultimate properties of the resultant biobased nanocomposites were investigated. Mechanical and thermal properties of the TO-based unsaturated polyester resin (UPR) were greatly improved by the incorporation of GO. For example, at the optimal GO content (only 0.10 wt %), the obtained biobased nanocomposite showed tensile strength and modulus of 43.2 MPa and 2.62 GPa, and T(g) of 105.2 °C, which were 159%, 191%, and 49.4% higher than those of the unreinforced UPR/TO resin, respectively. Compared to neat UPR, the biobased UPR nanocomposite with 0.1 wt % of GO even demonstrated superior comprehensive properties (comparable stiffness and T(g), while better toughness and thermal stability). Therefore, the developed biobased UPR nanocomposites are very promising to be applied in structural plastics. MDPI 2018-11-20 /pmc/articles/PMC6401922/ /pubmed/30961213 http://dx.doi.org/10.3390/polym10111288 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Chengguo
Wang, Cuina
Tang, Jijun
Zhang, Jing
Shang, Qianqian
Hu, Yun
Wang, Hongxiao
Wu, Qiong
Zhou, Yonghong
Lei, Wen
Liu, Zengshe
High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †
title High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †
title_full High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †
title_fullStr High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †
title_full_unstemmed High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †
title_short High-Performance Biobased Unsaturated Polyester Nanocomposites with Very Low Loadings of Graphene †
title_sort high-performance biobased unsaturated polyester nanocomposites with very low loadings of graphene †
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401922/
https://www.ncbi.nlm.nih.gov/pubmed/30961213
http://dx.doi.org/10.3390/polym10111288
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