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Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins

In order to develop new phosphorus–nitrogen-containing flame retardants, three novel compounds of DOPO-substituted aminophenyl-s-triazine (TAT-DOPO) with different P/N element ratios were synthesized by Kabachnik–Fields reaction. TAT-triDOPO possessing three DOPO units in one molecule exhibited the...

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Autores principales: Wu, Haiyang, Hu, Rong, Zeng, Birong, Yang, Li, Chen, Ting, Zheng, Wei, Liu, Xinyu, Luo, Weiang, Dai, Lizong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9089353/
https://www.ncbi.nlm.nih.gov/pubmed/35558621
http://dx.doi.org/10.1039/c8ra07450j
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author Wu, Haiyang
Hu, Rong
Zeng, Birong
Yang, Li
Chen, Ting
Zheng, Wei
Liu, Xinyu
Luo, Weiang
Dai, Lizong
author_facet Wu, Haiyang
Hu, Rong
Zeng, Birong
Yang, Li
Chen, Ting
Zheng, Wei
Liu, Xinyu
Luo, Weiang
Dai, Lizong
author_sort Wu, Haiyang
collection PubMed
description In order to develop new phosphorus–nitrogen-containing flame retardants, three novel compounds of DOPO-substituted aminophenyl-s-triazine (TAT-DOPO) with different P/N element ratios were synthesized by Kabachnik–Fields reaction. TAT-triDOPO possessing three DOPO units in one molecule exhibited the best thermal stability. Besides, TAT-triDOPO and TAT-hexaDOPO possessing active hydrogen displayed the characteristics of reactive-type retardant, while TAT-enneaDOPO without active hydrogen represented additive-type retardant. The influences of three TAT-DOPO compounds on the thermal stability, flame retardancy and mechanical properties of the cured EP composites were investigated. Compared with pure EP, the char yields of EP/TAT-DOPO were increased. The LOI value and the UL-94 ratings of EP/TAT-triDOPO with a 5% loading were improved to 34.0% and V-0 grade. The PHRR, THR and HRC of EP/TAT-triDOPO were decreased by 25.7%, 21.1% and 25.4%, respectively. Furthermore, the incorporation of TAT-triDOPO could also improve the flexural strength and elastic modulus of cured EP. It was explained that the existence of active hydrogen atoms within TAT-triDOPO molecule can act as effective chemical cross-linking points in EP network. Finally, based on the SEM and TGA-FTIR analysis of pyrolytic products of cured EP/TAT-DOPO, it was deduced that the prepared TAT-DOPO flame retardant could exhibit both condensed phase and gas phase flame-retardancy mechanism.
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spelling pubmed-90893532022-05-11 Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins Wu, Haiyang Hu, Rong Zeng, Birong Yang, Li Chen, Ting Zheng, Wei Liu, Xinyu Luo, Weiang Dai, Lizong RSC Adv Chemistry In order to develop new phosphorus–nitrogen-containing flame retardants, three novel compounds of DOPO-substituted aminophenyl-s-triazine (TAT-DOPO) with different P/N element ratios were synthesized by Kabachnik–Fields reaction. TAT-triDOPO possessing three DOPO units in one molecule exhibited the best thermal stability. Besides, TAT-triDOPO and TAT-hexaDOPO possessing active hydrogen displayed the characteristics of reactive-type retardant, while TAT-enneaDOPO without active hydrogen represented additive-type retardant. The influences of three TAT-DOPO compounds on the thermal stability, flame retardancy and mechanical properties of the cured EP composites were investigated. Compared with pure EP, the char yields of EP/TAT-DOPO were increased. The LOI value and the UL-94 ratings of EP/TAT-triDOPO with a 5% loading were improved to 34.0% and V-0 grade. The PHRR, THR and HRC of EP/TAT-triDOPO were decreased by 25.7%, 21.1% and 25.4%, respectively. Furthermore, the incorporation of TAT-triDOPO could also improve the flexural strength and elastic modulus of cured EP. It was explained that the existence of active hydrogen atoms within TAT-triDOPO molecule can act as effective chemical cross-linking points in EP network. Finally, based on the SEM and TGA-FTIR analysis of pyrolytic products of cured EP/TAT-DOPO, it was deduced that the prepared TAT-DOPO flame retardant could exhibit both condensed phase and gas phase flame-retardancy mechanism. The Royal Society of Chemistry 2018-11-08 /pmc/articles/PMC9089353/ /pubmed/35558621 http://dx.doi.org/10.1039/c8ra07450j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wu, Haiyang
Hu, Rong
Zeng, Birong
Yang, Li
Chen, Ting
Zheng, Wei
Liu, Xinyu
Luo, Weiang
Dai, Lizong
Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
title Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
title_full Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
title_fullStr Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
title_full_unstemmed Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
title_short Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
title_sort synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9089353/
https://www.ncbi.nlm.nih.gov/pubmed/35558621
http://dx.doi.org/10.1039/c8ra07450j
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