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Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates

Isotactic polypropylene filled with 1 wt.% multi-walled carbon nanotubes (iPP/MWCNTs) were prepared, and their crystallization behavior induced by pressurizing to 2.0 GPa with adjustable rates from 2.5 to 1.3 × 10(4) MPa/s was studied. The obtained samples were characterized by combining wide angle...

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Autores principales: Li, Xiaoting, Jia, Wenxia, Dong, Beibei, Yuan, Huan, Su, Fengmei, Wang, Zhen, Wang, Yaming, Liu, Chuntai, Shen, Changyu, Shao, Chunguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723393/
https://www.ncbi.nlm.nih.gov/pubmed/31382397
http://dx.doi.org/10.3390/polym11081294
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author Li, Xiaoting
Jia, Wenxia
Dong, Beibei
Yuan, Huan
Su, Fengmei
Wang, Zhen
Wang, Yaming
Liu, Chuntai
Shen, Changyu
Shao, Chunguang
author_facet Li, Xiaoting
Jia, Wenxia
Dong, Beibei
Yuan, Huan
Su, Fengmei
Wang, Zhen
Wang, Yaming
Liu, Chuntai
Shen, Changyu
Shao, Chunguang
author_sort Li, Xiaoting
collection PubMed
description Isotactic polypropylene filled with 1 wt.% multi-walled carbon nanotubes (iPP/MWCNTs) were prepared, and their crystallization behavior induced by pressurizing to 2.0 GPa with adjustable rates from 2.5 to 1.3 × 10(4) MPa/s was studied. The obtained samples were characterized by combining wide angle X-ray diffraction, small angle X-ray scattering, differential scanning calorimetry, transmission electron microscopy and atomic force microscopy techniques. It was found that pressurization is a simple way to prepare iPP/MWCNTs composites in mesophase, γ-phase, or their blends. Two threshold pressurization rates marked as R(1) and R(2) were identified, while R(1) corresponds to the onset of mesomorphic iPP formation. When the pressurization rate is lower than R(1) only γ-phase generates, with its increasing mesophase begins to generate and coexist with γ-phase, and if it exceeds R(2) only mesophase can generate. When iPP/MWCNTs crystallized in γ-phase, compared with the neat iPP, the existence of MWCNTs can promote the nucleation of γ-phase, leading to the formation of γ-crystal with thicker lamellae. If iPP/MWCNTs solidified in mesophase, MWCNTs can decrease the growth rate of the nodular structure, leading to the formation of mesophase with smaller nodular domains (about 9.4 nm). Mechanical tests reveal that, γ-iPP/MWCNTs composites prepared by slow pressurization display high Young’s modulus, high yield strength and high elongation at break, and meso-iPP/MWCNTs samples have excellent deformability because of the existence of nodular morphology. In this sense, the pressurization method is proved to be an efficient approach to regulate the crystalline structure and the properties of iPP/MWCNTs composites.
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spelling pubmed-67233932019-09-10 Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates Li, Xiaoting Jia, Wenxia Dong, Beibei Yuan, Huan Su, Fengmei Wang, Zhen Wang, Yaming Liu, Chuntai Shen, Changyu Shao, Chunguang Polymers (Basel) Article Isotactic polypropylene filled with 1 wt.% multi-walled carbon nanotubes (iPP/MWCNTs) were prepared, and their crystallization behavior induced by pressurizing to 2.0 GPa with adjustable rates from 2.5 to 1.3 × 10(4) MPa/s was studied. The obtained samples were characterized by combining wide angle X-ray diffraction, small angle X-ray scattering, differential scanning calorimetry, transmission electron microscopy and atomic force microscopy techniques. It was found that pressurization is a simple way to prepare iPP/MWCNTs composites in mesophase, γ-phase, or their blends. Two threshold pressurization rates marked as R(1) and R(2) were identified, while R(1) corresponds to the onset of mesomorphic iPP formation. When the pressurization rate is lower than R(1) only γ-phase generates, with its increasing mesophase begins to generate and coexist with γ-phase, and if it exceeds R(2) only mesophase can generate. When iPP/MWCNTs crystallized in γ-phase, compared with the neat iPP, the existence of MWCNTs can promote the nucleation of γ-phase, leading to the formation of γ-crystal with thicker lamellae. If iPP/MWCNTs solidified in mesophase, MWCNTs can decrease the growth rate of the nodular structure, leading to the formation of mesophase with smaller nodular domains (about 9.4 nm). Mechanical tests reveal that, γ-iPP/MWCNTs composites prepared by slow pressurization display high Young’s modulus, high yield strength and high elongation at break, and meso-iPP/MWCNTs samples have excellent deformability because of the existence of nodular morphology. In this sense, the pressurization method is proved to be an efficient approach to regulate the crystalline structure and the properties of iPP/MWCNTs composites. MDPI 2019-08-02 /pmc/articles/PMC6723393/ /pubmed/31382397 http://dx.doi.org/10.3390/polym11081294 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
Li, Xiaoting
Jia, Wenxia
Dong, Beibei
Yuan, Huan
Su, Fengmei
Wang, Zhen
Wang, Yaming
Liu, Chuntai
Shen, Changyu
Shao, Chunguang
Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates
title Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates
title_full Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates
title_fullStr Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates
title_full_unstemmed Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates
title_short Structure and Mechanical Properties of Multi-Walled Carbon Nanotubes-Filled Isotactic Polypropylene Composites Treated by Pressurization at Different Rates
title_sort structure and mechanical properties of multi-walled carbon nanotubes-filled isotactic polypropylene composites treated by pressurization at different rates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723393/
https://www.ncbi.nlm.nih.gov/pubmed/31382397
http://dx.doi.org/10.3390/polym11081294
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