Lu Cheng, Lin Fangbing, Shao Huiqi, Bi Siyi, Chen Nanliang, Shao Guangwei, Jiang Jinhua
Shanghai Frontier Science Research Center for Modern Textiles, College of Textiles, Donghua University, Shanghai 201620, China.
Engineering Research Center of Technical Textiles, Ministry of Education, Donghua University, Shanghai 201620, China.
Polymers (Basel). 2022 Oct 27;14(21):4565. doi: 10.3390/polym14214565.
Polyimide (PI) films with excellent heat resistance and outstanding mechanical properties have been widely researched in microelectronics and aerospace fields. However, most PI films can only be used under ordinary conditions due to their instability of dimension. The fabrication of multifunctional PI films for harsh conditions is still a challenge. Herein, flexible, low coefficient of thermal expansion (CTE) and improved mechanical properties films modified by carboxylated carbon nanotube (C-CNT) were fabricated. Acid treatment was adapted to adjust the surface characteristics by using a mixture of concentrated HSO/HNO solution to introduce carboxyl groups on the surface and improve the interfacial performance between the CNT and matrix. Moreover, different C-CNT concentrations of 0, 1, 3, 5, 7, and 9 wt.% were synthesized to use for the PI film fabrication. The results demonstrated that the 9 wt.% and 5 wt.% C-CNT/PI films possessed the lowest CTE value and the highest mechanical properties. In addition, the thermal stability of the C-CNT/PI films was improved, making them promising applications in precise and harsh environments.
具有优异耐热性和出色机械性能的聚酰亚胺(PI)薄膜在微电子和航空航天领域得到了广泛研究。然而,大多数PI薄膜由于尺寸不稳定,只能在普通条件下使用。制备适用于苛刻条件的多功能PI薄膜仍然是一个挑战。在此,制备了由羧基化碳纳米管(C-CNT)改性的柔性、低热膨胀系数(CTE)和改善机械性能的薄膜。采用酸处理,通过使用浓HSO/HNO溶液的混合物来调节表面特性,以在表面引入羧基并改善CNT与基体之间的界面性能。此外,合成了0、1、3、5、7和9 wt.%不同C-CNT浓度用于PI薄膜制备。结果表明,9 wt.%和5 wt.%的C-CNT/PI薄膜具有最低的CTE值和最高的机械性能。此外,C-CNT/PI薄膜的热稳定性得到了提高,使其在精确和苛刻环境中有应用前景。