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High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming

CO(2) has been regarded as one of the most promising blowing agents for polystyrene (PS) foam due to its non-flammability, low price, nontoxicity, and eco-friendliness. However, the low solubility and fast diffusivity of CO(2) in PS hinder its potential applications. In this study, an attapulgite (A...

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Autores principales: Liu, Yidong, Jian, Lingfeng, Xiao, Tianhua, Liu, Rongtao, Yi, Shun, Zhang, Shiyang, Wang, Lingzhi, Wang, Ruibin, Min, Yonggang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6631731/
https://www.ncbi.nlm.nih.gov/pubmed/31167368
http://dx.doi.org/10.3390/polym11060985
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author Liu, Yidong
Jian, Lingfeng
Xiao, Tianhua
Liu, Rongtao
Yi, Shun
Zhang, Shiyang
Wang, Lingzhi
Wang, Ruibin
Min, Yonggang
author_facet Liu, Yidong
Jian, Lingfeng
Xiao, Tianhua
Liu, Rongtao
Yi, Shun
Zhang, Shiyang
Wang, Lingzhi
Wang, Ruibin
Min, Yonggang
author_sort Liu, Yidong
collection PubMed
description CO(2) has been regarded as one of the most promising blowing agents for polystyrene (PS) foam due to its non-flammability, low price, nontoxicity, and eco-friendliness. However, the low solubility and fast diffusivity of CO(2) in PS hinder its potential applications. In this study, an attapulgite (ATP)/polypyrrole (PPy) nanocomposite was developed using the in situ polymerization method to generate the hierarchical cell texture for the PS foam based on the supercritical CO(2) foaming. The results demonstrated that the nanocomposite could act as an efficient CO(2) capturer enabling the random release of it during the foaming process. In contrast to the pure PS foam, the ATP/PPy nanocomposite reinforced PS foam is endowed with high cell density (up to 1.9 × 10(6)) and similar thermal conductivity as the neat PS foam, as well as high compression modulus. Therefore, the in situ polymerized ATP/PPy nanocomposite makes supercritical CO(2) foaming desired candidate to replace the widely used fluorocarbons and chlorofluorocarbons as PS blowing agents.
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spelling pubmed-66317312019-08-19 High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming Liu, Yidong Jian, Lingfeng Xiao, Tianhua Liu, Rongtao Yi, Shun Zhang, Shiyang Wang, Lingzhi Wang, Ruibin Min, Yonggang Polymers (Basel) Article CO(2) has been regarded as one of the most promising blowing agents for polystyrene (PS) foam due to its non-flammability, low price, nontoxicity, and eco-friendliness. However, the low solubility and fast diffusivity of CO(2) in PS hinder its potential applications. In this study, an attapulgite (ATP)/polypyrrole (PPy) nanocomposite was developed using the in situ polymerization method to generate the hierarchical cell texture for the PS foam based on the supercritical CO(2) foaming. The results demonstrated that the nanocomposite could act as an efficient CO(2) capturer enabling the random release of it during the foaming process. In contrast to the pure PS foam, the ATP/PPy nanocomposite reinforced PS foam is endowed with high cell density (up to 1.9 × 10(6)) and similar thermal conductivity as the neat PS foam, as well as high compression modulus. Therefore, the in situ polymerized ATP/PPy nanocomposite makes supercritical CO(2) foaming desired candidate to replace the widely used fluorocarbons and chlorofluorocarbons as PS blowing agents. MDPI 2019-06-04 /pmc/articles/PMC6631731/ /pubmed/31167368 http://dx.doi.org/10.3390/polym11060985 Text en © 2019 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, Yidong
Jian, Lingfeng
Xiao, Tianhua
Liu, Rongtao
Yi, Shun
Zhang, Shiyang
Wang, Lingzhi
Wang, Ruibin
Min, Yonggang
High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming
title High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming
title_full High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming
title_fullStr High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming
title_full_unstemmed High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming
title_short High Performance Attapulgite/Polypyrrole Nanocomposite Reinforced Polystyrene (PS) Foam Based on Supercritical CO(2) Foaming
title_sort high performance attapulgite/polypyrrole nanocomposite reinforced polystyrene (ps) foam based on supercritical co(2) foaming
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6631731/
https://www.ncbi.nlm.nih.gov/pubmed/31167368
http://dx.doi.org/10.3390/polym11060985
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