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Regulating the performance of polybenzoxazine via the regiochemistry of amide substituents

机译:通过酰胺取代基的调节性调节聚苯细胞的性能

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A new strategy for the property regulation of polybenzoxazine via the regiochemistry of amide substituents was reported in this work. After the benzoxazine isomers, 2,6BAP-abz and 3,5BAP-abz, were synthesized, their chemical structures were confirmed by NMR, FT-IR and MS spectra. Then, how does the regiochemistry of amide substituent regulate the curing behaviors of benzoxazine monomers, as well as the thermal properties and flame retardancy of cured resins, poly(2,6BAP-abz) and poly(3,5BAP-abz), were investigated. Results showed that the intramolecular H-bonding involved with the ortho-CONH and 0 in oxazine ring in 3,5BAP-abz was much stronger than that in 2,6BAP-abz, which was responsible for its higher curing reactivity. As for the cured resin, poly(2,6BAP-abz) demonstrated higher glass transition temperature (T-g) and lower surface free energy (SFE) due to the formation of more intramolecular N-H center dot center dot center dot N interaction between pyridine and ortho-CONH. In addition, this H-bonding was also related with the oxazole ring formation temperature and fire retardancy of poly(2,6BAP-abz) and poly(3,5BAP-abz). Overall, a deeper insight into the effect of regiochemistry on properties of polybenzoxazine was achieved.
机译:在这项工作中,报道了通过酰胺取代基的测定法调节聚苯异种嗪的新策略。合成苯并嗪异构体,2,6bap-Abz和3,5bap-Abz后,通过NMR,FT-IR和MS光谱证实了它们的化学结构。然后,研究了酰胺取代基的测定性调节苯并嗪单体的固化行为,以及固化树脂的热性质和阻燃性,poly(2,6bap-abz)和poly(3,5bap-abz)的热性质和阻燃性。结果表明,在3,5bap-abz中涉及的邻核和0中涉及的分子内的H键合并在2,6bap-abz中的ortho-conh和0中涉及的邻态环中的粘合强大,其负责其较高的固化反应性。至于固化树脂,聚(2,6bap-ABZ)由于吡啶和官僚区之间的形成更多的分子内NH中心点中心点中心点N相互作用,呈现较高的玻璃化转变温度(Tg)和低表面自由能(SFE) -conh。此外,该H键合也与聚(2,6bap-abz)和聚(3,5bap-abz)的恶唑环形成温度和阻燃性有关。总体而言,达到了达到了达到了对聚苯噻嗪属性的影响的效果。

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