Construction of hierarchical Ti3C2TX@PHbP-PHC architecture with enhanced free-radical quenching capability: Effective reinforcement and fire safety performance in bismaleimide resin

Author:

Zhou Yifan,Qiu Shuilai,Guo Wenwen,Chu Fukai,Zhou Xia,Chen Weijian,Wang Jingwen,Zhang Kang,Cheng Liang,Hu Yuan

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry

Reference38 articles.

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2. Modification of bisphenol-A based bismaleimide resin (BPA-BMI) with an allyl-terminated hyperbranched polyimide (AT-PAEKI);Qin;Polymer,2006

3. Preparation and properties of hollow silica tubes/bismaleimide/diallylbisphenol A composites with improved toughness, dielectric properties, and flame retardancy;Wei;Polym. Advan. Technol.,2012

4. Green flame retarding bismaleimide resin with simultaneously good processing characteristics, high toughness and outstanding thermal stability based on a multi-functional organic boron compound;Zhu;Polym. Degrad. Stabil.,2015

5. functionalization of graphene/graphene-like MoSe2 hybrids as lubricant additives for bismaleimide composites: preparation, mechanical and tribological properties;Zhengyan;Compos. B Eng.,2019

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