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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Understanding of the polymerization mechanism of the phthalonitrile-based resins containing benzoxazine and their thermal stability
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Understanding of the polymerization mechanism of the phthalonitrile-based resins containing benzoxazine and their thermal stability

机译:理解含有苯并恶嗪的酞氯基树脂的聚合机理及其热稳定性

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摘要

As a unique class of high-performance phthalonitrile-based resins, phthalonitrile containing benzoxazine resin has attracted increasing interests in a widen application fields including aerospace, electronic packaging materials and flameresistant materials in marine. In order to reveal the polymerization mechanism of nitrile groups in the presence of benzoxazine, model experiments were designed and performed with three model compounds, which were synthesized according to the structures of the ring-opened benzoxazine rings. Model compounds with phenolic hydroxyl groups, amine structures and both of them were blended with bisphenol A phthalonitrile monomers and their curing behaviors were investigated by DSC and FTIR. Also, the possible polymerization process was proposed and discussed in detail. Results indicated that the polymerization of nitrile was promoted by the synergistic catalysis effects of the amine structures and the active hydrogen generated from the ring-opening of benzoxazine rings. The nitrile groups were firstly triggered by the lone pair electrons in amine structures and then the further polymerizations were promoted by the phenolic hydroxyl groups. Moreover, it was found that the compounds with well-ordered structures of phenol hydroxyl groups and amine structures exhibited relatively weak acceleration on the trigger polymerization of nitrile groups, while higher subsequent polymerization rate, in comparison with the other model compounds, which can be ascribed to their space configuration and the steric hindrance effects. Additionally, the thermal stability of the resulted polymers with various model compounds was studied to confirm the proposed polymerization mechanism and the final polymerization structures. (C) 2018 Elsevier Ltd. All rights reserved.
机译:作为一类独特的高性能酞硫氮基树脂,含有苯并恶嗪树脂的邻苯二甲腈在宽处的应用领域吸引了越来越兴趣的兴趣,包括航空航天,电子包装材料和海洋的火焰淤积材料。为了揭示丁恶嗪存在下腈基的聚合机制,设计了模型实验,并用三种模型化合物进行了设计,并根据环形苯并恶嗪环的结构合成。用酚羟基的模型化合物,用双酚磷酸二丙腈单体混合,通过DSC和FTIR研究其固化行为。而且,提出了可能的聚合过程并详细讨论。结果表明,胺结构的协同催化作用和从苯并嗪环的开环产生的活性氢的协同催化作用促进了丁腈的聚合。首先由胺结构中的孤砂电子首先触发腈基,然后通过酚羟基促进进一步的聚合。另外,发现具有诸如腈基的触发聚合的苯酚羟基和胺结构具有良好的酚醛结构的化合物,而随后的聚合率较高,与其他模型化合物相比,可以归属他们的空间配置和空间阻碍效果。另外,研究了具有各种模型化合物的所得聚合物的热稳定性,以确认所提出的聚合机制和最终聚合结构。 (c)2018年elestvier有限公司保留所有权利。

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