Semi-aromatic copolyesters with high strength and fire safety via hydrogen bonds and Π-Π stacking

被引:0
|
作者
Ni, Yan-Peng [1 ]
Li, Qi-Tian [1 ]
Chen, Lin [1 ]
Wu, Wan-Shou [1 ]
Qin, Zi-Hao [1 ]
Zhang, Yi [1 ]
Chen, Li [1 ]
Wang, Xiu-Li [1 ]
Wang, Yu-Zhong [1 ]
机构
[1] Collaborative Innovation Center for Eco-Friendly and Fire-Safety Polymeric Materials, National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Polymer Materials Engineering, College of Chemistry, Sichuan Univer
来源
基金
中国国家自然科学基金;
关键词
Anti-dripping - Aromatic copolyesters - Benzimidazole groups - Benzimidazoles - Crosslinking monomers - Fire safety - Flame-retardance - Physical crosslinking;
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学科分类号
摘要
Currently, it is still a huge challenge to prepare flame-retardant polymeric materials with excellent fire safety, high strength, good durability and processability. We here propose a H-bonding cross-linking strategy that can simultaneously endow polymers with excellent flame retardancy, non-dripping behavior and enhanced strength. In this work, a novel benzimidazole monomer, 2-(4-methoxycarbonyl-phenyl)-1H-benzimidazole-5-carboxylic acid methyl ester (PBM) has been designed as a H-bonding cross-linking monomer to prepare poly(ethylene terephthalate)-based copolyesters (PET-co-PBMs). Interestingly, along with the hydrogen bonding, the π-π stacking interactions from the benzimidazole groups also exist. Due to the formation of physical crosslinking network via hydrogen bonding and π-π stacking, the melt strength of copolyesters are greatly improved. Combining with char forming ability of benzimidazole, PET-co-PBMs display excellent fire safety. Moreover, PET-co-PBMs also exhibit higher glass transition temperature, higher mechanical strength and good processability. This work provides a promising strategy to design polymers with high strength, good processability, excellent flame retardance and anti-dripping performance. © 2019 Elsevier B.V.
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页码:694 / 705
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