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Novel allyl and propenyl monomers for modification of the bismaleimide resins, with excellent dielectric properties and high glass transition temperatures

机译:用于改性双聚烯烃树脂的新型烯丙基和丙烯单体,具有优异的介电性能和高玻璃化转变温度

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Two new monomers were prepared by the reaction of 2-allylphenol and 4,4 '-biphenyldicarbonyl chloride under different reaction conditions. The monomers were characterized by Fourier transform infrared spectroscopy and nuclear magnetic resonance spectroscopy. The curing processes of N,N-4,4 '-bismaleimidodiphenylmethyene with 4,4 '-bis(2-allylphenyl) biphenyldicarbonylate (BABC) and 4,4 '-bis(2-propenylphenyl benzoate) ether (BPBE) were studied by rheological analysis and differential scanning calorimetry. Melting points of two monomers, BABC and BPBE, are 64 degrees C and 121 degrees C, respectively. The ABMI [4,4 '-bis(2-allylphenyl)biphenyl bismaleimide] and PBMI [4,4 '-bis(2-propenylphenyl)biphenyl bismaleimide] resins showed exothermic peaks at 233 degrees C and 204 degrees C, respectively. The measured melting points are significantly lower than that of the traditional bismaleimide resin which is modified by allyl bisphenol A. Dynamic mechanical analysis of the materials showed glass transition temperatures of ABMI and PBMI to be in the range of 213-258 degrees C and 302-339 degrees C, respectively. Thermogravimetric analysis of the cured resins showed 5% weight loss for ABMI and PMBI at 437 degrees C and 428 degrees C, along with char residues of 35.6-39.5%, respectively, at 800 degrees C under nitrogen atmosphere. Furthermore, dielectric constants of propenyl-modified resins were lower (2.46-3.10) with dissipation factors of 0.0034-0.0036, compared with those of allyl bisphenol A resins.
机译:通过2-烯丙基酚和4,4'-萘二碳氧酰氯在不同的反应条件下的两种新单体制备。通过傅里叶变换红外光谱和核磁共振光谱表征单体。 N,N-4,4'-BismaleImidododhenylyene的固化方法用4,4'-bis(2-烯丙基)Biphyldicarbole(Babc)和4,4'-bis(2-丙基苯基苯甲酸苯甲酸酯)醚(BPBE)进行了研究流变分析和差示扫描量热法。两种单体,BABC和BPBE的熔点分别为64℃和121摄氏度。 ABMI [4,4'-Bis(2-烯丙基)双苯基二烯基]和PBMI分别在233℃和204℃下分别显示出放热峰的峰值。测量的熔点显着低于通过烯丙基双酚A改性的传统双聚烯烃树脂的熔点。材料的动态力学分析显示ABMI和PBMI的玻璃化转变温度为213-258℃和302-分别为339℃。固化树脂的热重分析在437摄氏度和428℃下,在437℃和428℃下,在437℃和428℃下,在800℃下,在氮气氛下分别为35.6-39.5%的炭残余物。此外,与烯丙基双酚A树脂的树脂相比,丙烯基改性树脂的介电子常数较低(2.46-3.10),耗散因子为0.0034-0.0036。

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