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用于多功能应用的连续且多孔聚酰亚胺气凝胶纤维的简便制备

Facile Preparation of Continuous and Porous Polyimide Aerogel Fibers for Multifunctional Applications.

作者信息

Li Mengmeng, Gan Feng, Dong Jie, Fang Yuting, Zhao Xin, Zhang Qinghua

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, P. R. China.

School of Textile Materials and Engineering, Wuyi University, Jiangmen, Guangdong 529020, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 3;13(8):10416-10427. doi: 10.1021/acsami.0c21842. Epub 2021 Feb 17.

Abstract

High-performance aerogel fibers with high porosity, ultralow density and thermal conductivity, and good flexibility are attractive candidates for the next generation of effective thermal insulation, efficient personal thermal management, and other functional applications. However, most previously reported aerogel fibers suffered from either limited working temperatures, weak mechanical properties, or complex manufacturing processes. In the present work, a facile wet-spinning technique combined with freeze-drying was developed to fabricate strong polyimide aerogel fibers (PAFs) based on organo-soluble polyimide. Attributed to the unique "porous core-dense sheath" morphology, the PAFs exhibited excellent mechanical properties with an optimum tensile strength of 265 MPa and an initial modulus of 7.9 GPa at an ultimate elongation of 65%, representing the highest value for aerogel fibers reported so far. Moreover, the PAFs possess high porosity (>80%) and high specific surface area (464 m g), which render the woven PAF fabrics with excellent thermal insulation properties within a wide temperature range (-190 to 320 °C) and potential applications for thermal insulation under harsh environments. Additionally, a series of functionalized aerogel fibers or their fabrics based on PAFs, including phase-change fabrics with a thermoregulation function and electromagnetic shielding (EMI) textiles with a high EMI SE value, have been successfully fabricated for expanding their potential applications. Overall, this novel aerogel fiber sheds light on a promising direction for developing the next generation of high-performance thermal insulation and multifunctional fibers and textiles.

摘要

具有高孔隙率、超低密度和热导率以及良好柔韧性的高性能气凝胶纤维,是下一代有效隔热、高效个人热管理及其他功能应用的理想候选材料。然而,此前报道的大多数气凝胶纤维存在工作温度受限、机械性能较弱或制造工艺复杂等问题。在本工作中,开发了一种结合冷冻干燥的简便湿法纺丝技术,以制备基于有机可溶性聚酰亚胺的高强度聚酰亚胺气凝胶纤维(PAF)。由于独特的“多孔芯-致密鞘”形态,PAF表现出优异的机械性能,在极限伸长率为65%时,最佳拉伸强度为265 MPa,初始模量为7.9 GPa,这是迄今为止报道的气凝胶纤维的最高值。此外,PAF具有高孔隙率(>80%)和高比表面积(464 m²/g),这使得编织的PAF织物在宽温度范围(-190至320°C)内具有优异的隔热性能,并在恶劣环境下具有隔热的潜在应用。此外,基于PAF的一系列功能化气凝胶纤维或其织物,包括具有温度调节功能的相变织物和具有高电磁干扰屏蔽效能(EMI SE)值的电磁屏蔽(EMI)纺织品,已成功制备,以拓展其潜在应用。总体而言,这种新型气凝胶纤维为开发下一代高性能隔热和多功能纤维及纺织品指明了一个有前景的方向。

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