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Ultrasound-assisted synthesis of benzoxazine monomers: thermal and mechanical properties of polybenzoxazines

机译:超声辅助合成苯并恶嗪单体:聚苯并恶嗪的热力学性能

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摘要

A series of benzoxazine monomers (P-aea2-P-aea8) were prepared from appropriate aromatic diamines containing linear aliphatic ether chains with phenol and formaldehyde through the Mannich reaction under ultrasonication and conventional methods. Based on the reaction performance, the ultrasonication method has been found to be more facile and convenient for the synthesis of benzoxazine monomer than the conventional method. The synthesized monomers undergo curing at a lower temperature than that of conventional benzoxazine (Ba-A) monomer as evidenced from differential scanning calorimetric analysis. The presence of an aliphatic ether core in the benzoxazine monomer aids in lowering the curing temperature, which seems to vary linearly with chain length. Thermally polymerized benzoxazine (poly(P-aeas)) shows an enhanced tensile and flexural strength.
机译:在超声波和常规方法下,通过曼尼希反应,由含有线性脂肪族醚链的适当芳族二胺与苯酚和甲醛,通过苯胺和甲醛制备适当的一系列苯并恶嗪单体(P-aea2-P-aea8)。基于反应性能,发现超声法比常规方法更容易和方便地合成苯并恶嗪单体。差示扫描量热分析表明,合成的单体在比常规苯并恶嗪(Ba-A)单体更低的温度下进行固化。苯并恶嗪单体中脂族醚核的存在有助于降低固化温度,固化温度似乎随链长线性变化。热聚合的苯并恶嗪(聚(P-aeas))显示出增强的拉伸强度和弯曲强度。

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