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Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs

High-performance poly(1,4-butylene terephthalate) (PBT) nanocomposites have been developed via the consideration of phosphorus-containing agents and amino-carbon nanotube (A-CNT). One-pot functionalization method has been adopted to prepare functionalized CNTs via the reaction between A-CNT and diff...

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Autores principales: Zhu, San-E, Wang, Li-Li, Chen, Hao, Yang, Wei, Yuen, Anthony Chun-Yin, Chen, Timothy Bo-Yuan, Luo, Cheng, Bi, Wen-Mei, Hu, En-Zhu, Zhang, Jian, Si, Jing-Yu, Lu, Hong-Dian, Hu, Kun-Hong, Chan, Qing Nian, Yeoh, Guan Heng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853702/
https://www.ncbi.nlm.nih.gov/pubmed/29373531
http://dx.doi.org/10.3390/nano8020070
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author Zhu, San-E
Wang, Li-Li
Chen, Hao
Yang, Wei
Yuen, Anthony Chun-Yin
Chen, Timothy Bo-Yuan
Luo, Cheng
Bi, Wen-Mei
Hu, En-Zhu
Zhang, Jian
Si, Jing-Yu
Lu, Hong-Dian
Hu, Kun-Hong
Chan, Qing Nian
Yeoh, Guan Heng
author_facet Zhu, San-E
Wang, Li-Li
Chen, Hao
Yang, Wei
Yuen, Anthony Chun-Yin
Chen, Timothy Bo-Yuan
Luo, Cheng
Bi, Wen-Mei
Hu, En-Zhu
Zhang, Jian
Si, Jing-Yu
Lu, Hong-Dian
Hu, Kun-Hong
Chan, Qing Nian
Yeoh, Guan Heng
author_sort Zhu, San-E
collection PubMed
description High-performance poly(1,4-butylene terephthalate) (PBT) nanocomposites have been developed via the consideration of phosphorus-containing agents and amino-carbon nanotube (A-CNT). One-pot functionalization method has been adopted to prepare functionalized CNTs via the reaction between A-CNT and different oxidation state phosphorus-containing agents, including chlorodiphenylphosphine (DPP-Cl), diphenylphosphinic chloride (DPP(O)-Cl), and diphenyl phosphoryl chloride (DPP(O(3))-Cl). These functionalized CNTs, DPP(O(x))-A-CNTs (x = 0, 1, 3), were, respectively, mixed with PBT to obtain the CNT-based polymer nanocomposites through a melt blending method. Scanning electron microscope observations demonstrated that DPP(O(x))-A-CNT nanoadditives were homogeneously distributed within PBT matrix compared to A-CNT. The incorporation of DPP(O(x))-A-CNT improved the thermal stability of PBT. Moreover, PBT/DPP(O(3))-A-CNT showed the highest crystallization temperature and tensile strength, due to the superior dispersion and interfacial interactions between DPP(O(3))-A-CNT and PBT. PBT/DPP(O)-A-CNT exhibited the best flame retardancy resulting from the excellent carbonization effect. The radicals generated from decomposed polymer were effectively trapped by DPP(O)-A-CNT, leading to the reduction of heat release rate, smoke production rate, carbon dioxide and carbon monoxide release during cone calorimeter tests.
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spelling pubmed-58537022018-03-16 Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs Zhu, San-E Wang, Li-Li Chen, Hao Yang, Wei Yuen, Anthony Chun-Yin Chen, Timothy Bo-Yuan Luo, Cheng Bi, Wen-Mei Hu, En-Zhu Zhang, Jian Si, Jing-Yu Lu, Hong-Dian Hu, Kun-Hong Chan, Qing Nian Yeoh, Guan Heng Nanomaterials (Basel) Article High-performance poly(1,4-butylene terephthalate) (PBT) nanocomposites have been developed via the consideration of phosphorus-containing agents and amino-carbon nanotube (A-CNT). One-pot functionalization method has been adopted to prepare functionalized CNTs via the reaction between A-CNT and different oxidation state phosphorus-containing agents, including chlorodiphenylphosphine (DPP-Cl), diphenylphosphinic chloride (DPP(O)-Cl), and diphenyl phosphoryl chloride (DPP(O(3))-Cl). These functionalized CNTs, DPP(O(x))-A-CNTs (x = 0, 1, 3), were, respectively, mixed with PBT to obtain the CNT-based polymer nanocomposites through a melt blending method. Scanning electron microscope observations demonstrated that DPP(O(x))-A-CNT nanoadditives were homogeneously distributed within PBT matrix compared to A-CNT. The incorporation of DPP(O(x))-A-CNT improved the thermal stability of PBT. Moreover, PBT/DPP(O(3))-A-CNT showed the highest crystallization temperature and tensile strength, due to the superior dispersion and interfacial interactions between DPP(O(3))-A-CNT and PBT. PBT/DPP(O)-A-CNT exhibited the best flame retardancy resulting from the excellent carbonization effect. The radicals generated from decomposed polymer were effectively trapped by DPP(O)-A-CNT, leading to the reduction of heat release rate, smoke production rate, carbon dioxide and carbon monoxide release during cone calorimeter tests. MDPI 2018-01-26 /pmc/articles/PMC5853702/ /pubmed/29373531 http://dx.doi.org/10.3390/nano8020070 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
Zhu, San-E
Wang, Li-Li
Chen, Hao
Yang, Wei
Yuen, Anthony Chun-Yin
Chen, Timothy Bo-Yuan
Luo, Cheng
Bi, Wen-Mei
Hu, En-Zhu
Zhang, Jian
Si, Jing-Yu
Lu, Hong-Dian
Hu, Kun-Hong
Chan, Qing Nian
Yeoh, Guan Heng
Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs
title Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs
title_full Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs
title_fullStr Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs
title_full_unstemmed Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs
title_short Comparative Studies on Thermal, Mechanical, and Flame Retardant Properties of PBT Nanocomposites via Different Oxidation State Phosphorus-Containing Agents Modified Amino-CNTs
title_sort comparative studies on thermal, mechanical, and flame retardant properties of pbt nanocomposites via different oxidation state phosphorus-containing agents modified amino-cnts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853702/
https://www.ncbi.nlm.nih.gov/pubmed/29373531
http://dx.doi.org/10.3390/nano8020070
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