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首页> 外文期刊>High performance polymers >Phthalonitrile-functional multiple arylene ether nitrile-containing phthalazinone moiety: facile synthesis, curing, and properties
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Phthalonitrile-functional multiple arylene ether nitrile-containing phthalazinone moiety: facile synthesis, curing, and properties

机译:邻苯二甲腈功能的多亚芳基醚腈含酞嗪酮部分:易于合成,固化和性能

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This article discloses a series of processable multiple phthalazinone-based ether nitriles with various contents of phtha-lonitrile ends (compounds 4a—4e) and compares the cyclization feasibility of terminal phthalonitrile and pendant cyano group. Compounds 4a-4e were synthesized by facile polycondensation of excess 4-(4-hydroxyphenyl)-2,3-phthalazine-1-one (compound 1) with 2,6-difluorobenzonitrile (compound 2), followed by end-capping of 4-nitrophthalonitrile (compound 4). Their number-averaged molecular weights (M_ns) and glass transitions can be well tailored by adjusting reactant ratio. Compounds 4a-4e are readily soluble in N-methyl-2-pyrrolidone, N,N-dimethylacetamide, dimethyl sulfoxide, N,N-dimethylformamide, and chloroform and hence can be processed either from their solutions or from melts. On mixing with trace amount of bis(4-aminophenyl)sulfone (compound 5), all oligomers were cross-linked to insoluble networks (compounds 6a-6d) except the high-molecular-weight 4e with the lowest phthalonitrile content. The phthalonitrile is found to be an effectively reactive site for cross-linking, whereas the pendant cyano group in multiple ether nitriles hardly undergoes any reaction confirmed by model reaction. Compounds 6a-6d maintain good structural integrity upon heating to 450°C and exhibit superior thermal stabilities compared with the known phthalazinone polymers. Compounds 6a-6d exhibit high flexural strength (98-111 MPa) as well as limited water absorption (2.2-2.7 wt%) under ambient conditions over a course of 30 days, permitting them to be promising candidates for organic electronics and automotives.
机译:本文公开了一系列具有多种邻苯二甲酰基端(化合物4a-4e)含量的可加工的多种基于酞嗪酮的醚腈,并比较了末端邻苯二甲腈和氰基侧基的环化可行性。化合物4a-4e的合成方法是:将过量的4-(4-羟苯基)-2,3-酞嗪-1-酮(化合物1)与2,6-二氟苄腈(化合物2)进行容易的缩聚反应,然后对4进行封端-硝基邻苯二甲腈(化合物4)。它们的数均分子量(M_ns)和玻璃化转变可以通过调节反应物比率来很好地调整。化合物4a-4e易于溶于N-甲基-2-吡咯烷酮,N,N-二甲基乙酰胺,二甲基亚砜,N,N-二甲基甲酰胺和氯仿,因此可以从其溶液或熔融物中加工。在与痕量的双(4-氨基苯基)砜(化合物5)混合后,所有低聚物均与不溶性网络(化合物6a-6d)交联,但邻苯二甲腈含量最低的高分子量4e除外。发现邻苯二甲腈是交联的有效反应部位,而多个醚腈中的氰基侧基几乎不经历模型反应证实的任何反应。与已知的酞嗪酮聚合物相比,化合物6a-6d在加热至450°C时保持良好的结构完整性,并表现出优异的热稳定性。化合物6a-6d在环境条件下历时30天,显示出高的抗弯强度(98-111 MPa)和有限的吸水率(2.2-2.7 wt%),使其成为有机电子和汽车的有希望的候选者。

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