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Synthesis of a novel benzoxazine-containing benzoxazole structure and its high performance thermoset

机译:新型含苯并恶嗪的苯并恶唑结构的合成及其高性能热固性

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摘要

A novel benzoxazine containing benzoxazole structures (Boz-BOA) was synthesized and its thermoset [P(Boz-BOA)] was prepared. For comparison, another benzoxazine-based 4,4′-diamine diphenyl methane (Boz-MDA) was also synthesized using a simplified procedure. The structure of Boz-BOA and Boz-MDA was confirmed by Fourier transform infrared (FTIR) and 1H-NMR. Using FTIR and differential scanning calorimetric scans method, the curing behavior of Boz-BOA was probed, and the structure of P(Boz-BOA) was addressed, which was similar to that of P(Boz-MDA). Data of dynamic mechanical analysis showed that P(Boz-BOA) exhibited a better modulus retention at high temperature than P(Boz-MDA), which was attributed to benzoxazole structure restricting the mobility of chains, even at high temperature. P(Boz-BOA) also exhibited high glass transition temperature (T _g), excellent thermal stability, and low coefficient of thermal expansion value at wide temperature range.
机译:合成了一种新型的含苯并恶唑结构的苯并恶嗪(Boz-BOA),并制备了其热固性[P(Boz-BOA)]。为了进行比较,还使用简化的方法合成了另一种基于苯并恶嗪的4,4'-二胺二苯甲烷(Boz-MDA)。 Boz-BOA和Boz-MDA的结构通过傅立叶变换红外光谱(FTIR)和1H-NMR确认。使用FTIR和差示扫描量热法,检测了Boz-BOA的固化行为,并提出了与P(Boz-MDA)相似的P(Boz-BOA)结构。动态力学分析数据表明,P(Boz-BOA)在高温下比P(Boz-MDA)表现出更好的模量保持性,这归因于苯并恶唑结构即使在高温下也限制了链的迁移。 P(Boz-BOA)在宽温度范围内还显示出高玻璃化转变温度(T _g),优异的热稳定性和低热膨胀系数值。

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