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Degradation and Dynamic Properties of Poly(amide-co-imide)/Carbon Nanotube Composite Films

机译:聚(酰胺-共酰亚胺)/碳纳米管复合薄膜的降解及动力学性能

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摘要

Poly (amide-imide) (PAI)/carbon nanotube (CNT) composite films were investigated through FT-IR spectroscopy, TGA, and DMTA measurements in order to understand the interrelationships of surface modification of CNTs, thermal imidization time, and thermal stability after they were prepared by solution mixing. Thermal stability and glass transition temperature were significantly improved when the PAI/CNT nanocomposites were filled with hydrogen peroxide treated CNTs (p-CNT) because the dispersion of p-CNTs and interfacial bonding between p-CNT particles and PAI molecules were improved. The imidization time of the PAI/p-CNT composite film needed for sufficient imidization reaction was reduced by about 3 hours compared with that of the pure PAI film, because p-CNTs have higher thermal conductivity than the pure PAI resin. They also showed the highest glass transition temperature among all PAI/CNT composites since p-CNTs have many hydrophilic functional groups which yield strong interaction with PAI molecules. It was found that the thermal imidization depended on the network structure which was generated by the crosslinking reaction and surface modification of CNTs.
机译:通过FT-IR光谱,TGA和DMTA测量研究了聚(酰胺-酰亚胺)(PAI)/碳纳米管(CNT)复合膜,以了解CNT的表面改性,热酰亚胺化时间和热稳定性后的相互关系。它们是通过溶液混合制备的。当用过氧化氢处理的CNT(p-CNT)填充PAI / CNT纳米复合材料时,由于提高了p-CNT的分散性以及p-CNT颗粒与PAI分子之间的界面键合,热稳定性和玻璃化转变温度得到了显着改善。与纯PAI膜相比,充分酰亚胺化反应所需的PAI / p-CNT复合膜的酰亚胺化时间减少了约3小时,这是因为p-CNT具有比纯PAI树脂更高的导热率。他们还显示出在所有PAI / CNT复合材料中最高的玻璃化转变温度,因为p-CNT具有许多亲水性官能团,可与PAI分子产生强烈的相互作用。发现热酰亚胺化取决于由CNT的交联反应和表面改性产生的网络结构。

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