Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect

A novel high-efficient flame retardant epoxy grafted poly-acrylic resin modified by phosphorus and nitrogen was successfully synthesized by radical grafting polymerization and solution polymerization simultaneously. The flame retardancy of copolymer resin was investigated using thermogravimetric ana...

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Main Authors: Chao Liu, Hui Qiao, Guilong Xu, Yun Liang, Jin Yang, Jian Hu
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/16/2826
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spelling doaj-35289f4400eb46a1b23c450c22764b412021-08-26T14:15:43ZengMDPI AGPolymers2073-43602021-08-01132826282610.3390/polym13162826Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment EffectChao Liu0Hui Qiao1Guilong Xu2Yun Liang3Jin Yang4Jian Hu5National Engineering Research Center of Papermaking and Pollution Control, South China University of Technology, Guangzhou 510640, ChinaNational Engineering Research Center of Papermaking and Pollution Control, South China University of Technology, Guangzhou 510640, ChinaNational Engineering Research Center of Papermaking and Pollution Control, South China University of Technology, Guangzhou 510640, ChinaNational Engineering Research Center of Papermaking and Pollution Control, South China University of Technology, Guangzhou 510640, ChinaNational Engineering Research Center of Papermaking and Pollution Control, South China University of Technology, Guangzhou 510640, ChinaNational Engineering Research Center of Papermaking and Pollution Control, South China University of Technology, Guangzhou 510640, ChinaA novel high-efficient flame retardant epoxy grafted poly-acrylic resin modified by phosphorus and nitrogen was successfully synthesized by radical grafting polymerization and solution polymerization simultaneously. The flame retardancy of copolymer resin was investigated using thermogravimetric analysis (TGA), cone calorimetric test (CONE), limiting oxygen index (LOI) and so on. The micro-morphology and chemical composition of char formed after a CONE calorimetric test was analyzed using scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS), respectively. The Kissinger method was used to evaluate the kinetics of thermal decomposition on copolymer resin. The results showed that the flame retardant property of copolymer resin increased with the increase in phosphorus content. With the increase in nitrogen content, however, the flame retardant property first increased and then decreased. The flame retardant property of the resin was the best and the limiting oxygen index could reach 34.3% when the phosphorus content and nitrogen content of the copolymer resin were 6.45 wt% and 2.33 wt%, respectively. Meanwhile, nitrogen-containing compounds will interact with phosphorus-containing compounds to form P-N intermediates during combustion, which have stronger dehydration and carbonization and could further enhance the flame retardant performance of the resin and generate phosphorus-nitrogen synergistic interactions.https://www.mdpi.com/2073-4360/13/16/2826epoxyradical grafting polymerizationflame retardantphosphorus-nitrogen synergism
collection DOAJ
language English
format Article
sources DOAJ
author Chao Liu
Hui Qiao
Guilong Xu
Yun Liang
Jin Yang
Jian Hu
spellingShingle Chao Liu
Hui Qiao
Guilong Xu
Yun Liang
Jin Yang
Jian Hu
Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect
Polymers
epoxy
radical grafting polymerization
flame retardant
phosphorus-nitrogen synergism
author_facet Chao Liu
Hui Qiao
Guilong Xu
Yun Liang
Jin Yang
Jian Hu
author_sort Chao Liu
title Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect
title_short Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect
title_full Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect
title_fullStr Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect
title_full_unstemmed Phosphorous-Nitrogen Modification of Epoxy Grafted Poly-Acrylic Resin: Synergistic Flame Retardment Effect
title_sort phosphorous-nitrogen modification of epoxy grafted poly-acrylic resin: synergistic flame retardment effect
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2021-08-01
description A novel high-efficient flame retardant epoxy grafted poly-acrylic resin modified by phosphorus and nitrogen was successfully synthesized by radical grafting polymerization and solution polymerization simultaneously. The flame retardancy of copolymer resin was investigated using thermogravimetric analysis (TGA), cone calorimetric test (CONE), limiting oxygen index (LOI) and so on. The micro-morphology and chemical composition of char formed after a CONE calorimetric test was analyzed using scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS), respectively. The Kissinger method was used to evaluate the kinetics of thermal decomposition on copolymer resin. The results showed that the flame retardant property of copolymer resin increased with the increase in phosphorus content. With the increase in nitrogen content, however, the flame retardant property first increased and then decreased. The flame retardant property of the resin was the best and the limiting oxygen index could reach 34.3% when the phosphorus content and nitrogen content of the copolymer resin were 6.45 wt% and 2.33 wt%, respectively. Meanwhile, nitrogen-containing compounds will interact with phosphorus-containing compounds to form P-N intermediates during combustion, which have stronger dehydration and carbonization and could further enhance the flame retardant performance of the resin and generate phosphorus-nitrogen synergistic interactions.
topic epoxy
radical grafting polymerization
flame retardant
phosphorus-nitrogen synergism
url https://www.mdpi.com/2073-4360/13/16/2826
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AT guilongxu phosphorousnitrogenmodificationofepoxygraftedpolyacrylicresinsynergisticflameretardmenteffect
AT yunliang phosphorousnitrogenmodificationofepoxygraftedpolyacrylicresinsynergisticflameretardmenteffect
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