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Synthesis of a bifunctional epoxy monomer containing biphenyl moiety and properties of its cured polymer with phenol novolac

机译:含联苯部分的双官能环氧单体的合成及其酚醛清漆的固化聚合物性能

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摘要

A new type of epoxy resin containing a 4,4 prime -biphenylene moiety in the backbone (Bis-EBP) is synthesized and confirmed by elemental analysis, infrared spectroscopy, and ~1H-nuclear magnetic resonance spectroscopy. In addition, to evaluate the influence of the 4,4 prime -biphenylene group in the structure, an epoxy resin having a 1,4-phenylene group in place of the 4,4 prime -biphenylene moiety (Bis-EP) is synthesized. The cured polymer obtained through the curing reaction between the new biphenyl-containing epoxy resin and phenol novolac is used for making a comparison of its thermal and physical properties with those obtained from Bis-EP and bisphenol-A (4,4 prime -isopropylidenediphenyl)-type epoxy resin (Bis-EA). The cured polymer obtained from Bis-EBP shows markedly higher fracture toughness of 1.32 MPa m~(1/2);, higher glass transition temperature, lower moisture absorption, and higher thermal decomposition temperature.
机译:合成了一种在骨架中包含4,4伯-联苯撑部分的新型环氧树脂(Bis-EBP),并通过元素分析,红外光谱和〜1H核磁共振光谱确认。另外,为了评估4,4-伯-联亚苯基在结构中的影响,合成了具有1,4-亚苯基代替4,4-伯-联亚苯基部分(Bis-EP)的环氧树脂。通过将新型的含联苯的环氧树脂和线型酚醛清漆之间的固化反应获得的固化聚合物用于与由Bis-EP和双酚A(4,4伯-异丙基二烯丙基二苯基)获得的热和物理性质进行比较型环氧树脂(Bis-EA)。由Bis-EBP制得的固化聚合物的断裂韧性明显较高,为1.32MPa·m(1/2);较高的玻璃化转变温度,较低的吸湿率和较高的热分解温度。

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