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High Performance Poly(amide-co- benzoxazine) Copolymers via New Route

机译:通过新路线的高性能聚(酰胺共同苯并恶嗪)共聚物

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Benzoxazine resins are a recently developed class of thermosetting polymers. The diversity of their applications comes from their unique properties that include excellent mechanical and thermal properties, low water absorption, rich molecular design flexibility, and near-zero shrinkage upon polymerization [1]. Classical benzoxazine monomers, as the first generation of polybenzoxazine precursors have been synthesized using amine, phenol, and formaldehyde to afford the monomer which then undergoes ring- opening polymerization to form the benzoxazine resins [2]. Polybenzoxazine derived via this approach are brittle due to the competition between the propagation of polymer chains and intramolecular hydrogen bonding. This leads to termination and branching of the network structure, resulting in low crosslinking density. To overcome these problems, main chain type benzoxazine polymer has been developed as a new precursor for polybenzoxazines. The final properties of the main chain type are a combination of the advantages of thermoplastic and thermosetting polymers. This unique class of thermoplastic/thermosetting crossover polymers would be attractive for many applications, such as aerospace, electronic packaging, printed circuit board, and membranes [3].
机译:苯并恶嗪树脂是最近开发的热固性聚合物类别。其应用的多样性来自其独特的性质,包括优异的机械和热性能,低吸水性,富含分子设计柔韧性,并在聚合时接近零收缩[1]。古典苯并恶嗪单体,作为第一代的聚苯恶唑嗪前体已经使用胺,苯酚和甲醛合成,得到单体,然后经历开环聚合以形成苯并恶嗪树脂[2]。由于聚合物链和分子内氢键的繁殖与分子内氢键之间的竞争,通过这种方法衍生的聚苯细胞是脆性的。这导致网络结构的终止和分支,导致交联密度低。为了克服这些问题,主要链型苯并恶嗪聚合物已被开发为聚宝氧杂志的新前体。主链式的最终性质是热塑性和热固性聚合物的优点的组合。这种独特的热塑性/热固性交叉聚合物对许多应用具有吸引力,例如航空航天,电子包装,印刷电路板和膜[3]。

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