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Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite

Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of isotactic Polypropylene (iPP) composites, which have been found with excellent performance. However, the interface compatibility between BC and iPP is poor. In this study, iPP/BC composites were prep...

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Autores principales: Wang, Bo, Lin, Fu-hua, Li, Xiang-yang, Zhang, Zhong-wei, Xue, Xiao-rong, Liu, Si-xiao, Ji, Xu-ran, Yu, Qian, Yuan, Zheng-qiu, Chen, Xin-de, Luo, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401962/
https://www.ncbi.nlm.nih.gov/pubmed/30961209
http://dx.doi.org/10.3390/polym10111284
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author Wang, Bo
Lin, Fu-hua
Li, Xiang-yang
Zhang, Zhong-wei
Xue, Xiao-rong
Liu, Si-xiao
Ji, Xu-ran
Yu, Qian
Yuan, Zheng-qiu
Chen, Xin-de
Luo, Jun
author_facet Wang, Bo
Lin, Fu-hua
Li, Xiang-yang
Zhang, Zhong-wei
Xue, Xiao-rong
Liu, Si-xiao
Ji, Xu-ran
Yu, Qian
Yuan, Zheng-qiu
Chen, Xin-de
Luo, Jun
author_sort Wang, Bo
collection PubMed
description Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of isotactic Polypropylene (iPP) composites, which have been found with excellent performance. However, the interface compatibility between BC and iPP is poor. In this study, iPP/BC composites were prepared by solution mixing. Esterification modified BC (CO) and Maleic anhydride grafted polypropylene (MAPP) added as a compatibilizer was both used to improve the interfacial compatibility of the iPP/BC composites. The rheology and isothermal crystallization behavior of the composites was tested and discussed. The result shows that the complex viscosity and storage modulus of the composite significantly increase in the rule iPP, iPP/BC2, iPP/CO2, and M-iPP/BC3, which indicates that the compatibility of the composite increases as this rule. According to the isothermal crystallization kinetics result, the crystal growth mode of iPP was not affected by the addition of BC and the interfacial compatibility. The spherulite growth rate of the iPP/BC composite increases with increasing crystallization temperature. Especially, the value decreases as the same rule with the complex viscosity and storage modulus of the composite at the same isothermal crystallization temperature. These results suggest that the interface compatibility of iPP/BC composites is greatly improved and the interface compatibility of the M-iPP/BC3 is better than the iPP/CO2.
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spelling pubmed-64019622019-04-02 Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite Wang, Bo Lin, Fu-hua Li, Xiang-yang Zhang, Zhong-wei Xue, Xiao-rong Liu, Si-xiao Ji, Xu-ran Yu, Qian Yuan, Zheng-qiu Chen, Xin-de Luo, Jun Polymers (Basel) Article Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of isotactic Polypropylene (iPP) composites, which have been found with excellent performance. However, the interface compatibility between BC and iPP is poor. In this study, iPP/BC composites were prepared by solution mixing. Esterification modified BC (CO) and Maleic anhydride grafted polypropylene (MAPP) added as a compatibilizer was both used to improve the interfacial compatibility of the iPP/BC composites. The rheology and isothermal crystallization behavior of the composites was tested and discussed. The result shows that the complex viscosity and storage modulus of the composite significantly increase in the rule iPP, iPP/BC2, iPP/CO2, and M-iPP/BC3, which indicates that the compatibility of the composite increases as this rule. According to the isothermal crystallization kinetics result, the crystal growth mode of iPP was not affected by the addition of BC and the interfacial compatibility. The spherulite growth rate of the iPP/BC composite increases with increasing crystallization temperature. Especially, the value decreases as the same rule with the complex viscosity and storage modulus of the composite at the same isothermal crystallization temperature. These results suggest that the interface compatibility of iPP/BC composites is greatly improved and the interface compatibility of the M-iPP/BC3 is better than the iPP/CO2. MDPI 2018-11-18 /pmc/articles/PMC6401962/ /pubmed/30961209 http://dx.doi.org/10.3390/polym10111284 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
Wang, Bo
Lin, Fu-hua
Li, Xiang-yang
Zhang, Zhong-wei
Xue, Xiao-rong
Liu, Si-xiao
Ji, Xu-ran
Yu, Qian
Yuan, Zheng-qiu
Chen, Xin-de
Luo, Jun
Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite
title Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite
title_full Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite
title_fullStr Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite
title_full_unstemmed Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite
title_short Isothermal Crystallization and Rheology Properties of Isotactic Polypropylene/Bacterial Cellulose Composite
title_sort isothermal crystallization and rheology properties of isotactic polypropylene/bacterial cellulose composite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401962/
https://www.ncbi.nlm.nih.gov/pubmed/30961209
http://dx.doi.org/10.3390/polym10111284
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