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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and Characterization of Thermally Stable, High-Modulus Polyimides Containing Benzimidazole Moieties
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Synthesis and Characterization of Thermally Stable, High-Modulus Polyimides Containing Benzimidazole Moieties

机译:含苯并咪唑基团的热稳定,高模量聚酰亚胺的合成与表征

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摘要

A series of novel benzimidazole-containing aromatic polyimides were prepared from synthesized 5,4'-diamino-2-phenyl benzimidazole (DAPBI), and commercial dianhydrides by the conventional two-step polymerization. The obtained films were amorphous and could afford flexible, transparent, and tough films with excellent thermal and mechanical properties. They showed high levels of tension strength of up to 234 MPa, modulus of up to 5.6 GPa without any stretching. According to thermal stability measurements, the glass-transition temperatures of the polymers were observed between 329 and 425 degrees C. The 5% weight-loss temperatures of most polyimides were above 600 degrees C in nitrogen. Excellent properties of these polyimides were proved to be attributed to the rigid-rod structure and hydrogen bond of inter-macromolecular. SAXS and SEM results showed self-molecular orientation caused the formation of rod-like extended conformations. It was demonstrated that high degree of supramolecular order led to the increase of thermal stability and mechanical properties of the polyimide films.
机译:由合成的5,4'-二氨基-2-苯基苯并咪唑(DAPBI)和市售二酐通过常规的两步聚合反应制备了一系列新型的含苯并咪唑的芳族聚酰亚胺。所获得的膜是无定形的,并且可以提供具有优异的热和机械性能的柔性,透明和坚韧的膜。它们显示出高达234 MPa的高拉伸强度,高达5.6 GPa的模量,没有任何拉伸。根据热稳定性测量,观察到聚合物的玻璃化转变温度为329至425摄氏度。在氮气中,大多数聚酰亚胺的5%失重温度高于600摄氏度。这些聚酰亚胺的优异性能被证明归因于大分子间的刚性棒结构和氢键。 SAXS和SEM结果表明,自分子取向引起棒状延伸构象的形成。已经证明,超分子序的高度导致聚酰亚胺膜的热稳定性和机械性能的增加。

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