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Self-cured phthalonitrile resin via multistage polymerization mediated by allyl and benzoxazine functional groups

机译:烯丙基和苯并恶嗪官能团介导的多级聚合自固化邻苯二甲腈树脂

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摘要

Self-curing allyl-functional phthalonitriles-containing benzoxazine (DABA-ph) has been designed and synthesized. These formed a resin through a curing process involving the sequential polymerization of allyl moieties, ring-opening polymerization of oxazine rings, and ring-forming polymerization of nitrile groups. The introduction of allyl moieties was found to improve the processability as the process started at a lower temperature of 160-200 degrees C than is needed for related resins. After self-curing, the resins exhibited high cross-linking degrees and excellent thermal stabilities. The glass transition temperature (T-g) was increased compared to similar resins to 380 degrees C with good thermal stability (5% weight loss temperature > 490 degrees C). These outstanding properties suggest the DABA-ph polymers are suitable candidates as matrices for high-performance composites.
机译:已经设计并合成了具有自固化烯丙基官能的苯二甲腈的苯并恶嗪(DABA-ph)。它们通过涉及烯丙基部分的顺序聚合,恶嗪环的开环聚合和腈基的成环聚合的固化过程形成树脂。发现烯丙基部分的引入改善了可加工性,因为该方法在比相关树脂所需的温度低的160-200℃下开始。自固化后,该树脂表现出高交联度和优异的热稳定性。与类似的树脂相比,玻璃化转变温度(T-g)提高到380摄氏度,具有良好的热稳定性(5%失重温度> 490摄氏度)。这些优异的性能表明,DABA-ph聚合物适合用作高性能复合材料的基质。

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