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用于恶劣环境下隔热的具有拓扑聚合物网络的机械强度高的聚酰胺酰亚胺气凝胶纤维

Topological Polymer Networks-Enabled Mechanically Strong Polyamide-Imide Aerogel Fibers for Thermal Insulation in Harsh Environments.

作者信息

Li Yuyao, Cui Wang, Wang Xin, Zhang Shuming, Du Qinghan, Fan Jie, Liu Yong

机构信息

School of Textile Science and Engineering, Key Laboratory of Advanced Textile Composite Materials of Ministry of Education, Tiangong University, Tianjin 300387, China.

Key Laboratory of Advanced Textile Composites, Ministry of Education of China, Tiangong University, Tianjin 300387, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 31;16(30):39993-40003. doi: 10.1021/acsami.4c07334. Epub 2024 Jul 17.

Abstract

Aerogel fibers have sparked substantial interest as attractive candidates for thermal insulation materials. Developing aerogel fibers with the desired porous structure, good knittability, flame retardancy, and high- and low-temperature resistance is of great significance for practical applications; however, that is very challenging, especially by using an efficient method. Herein, mechanically strong and flexible aerogel fibers with remarkable thermal insulation performance are reported, which are achieved by constructing stiff-soft topological polymer networks and a multilevel hollow porous structure. The combination of polyamide-imide (PAI) with stiff chains and polyurethane (PU) with soft chains is first found to be able to form a topological entanglement architecture. More importantly, multilevel hollow pores can be constructed synchronously through just a one-step and green wet-spinning process. The resultant PAI/PU@340 aerogel fibers show an ultrahigh breaking strength of 94.5 MPa and superelastic property with a breaking strain of 20%. Furthermore, they can be knitted into fabrics with a low thermal conductivity of 25 mW/(m·K) and exhibit attractive thermal insulation property under extremely high (300 °C) and low temperatures (-191 °C), implying them as promising candidates for next-generation thermal insulation materials.

摘要

气凝胶纤维作为极具吸引力的隔热材料候选者引发了广泛关注。开发具有所需多孔结构、良好可编织性、阻燃性以及耐高低温性能的气凝胶纤维对于实际应用具有重要意义;然而,这极具挑战性,尤其是采用高效方法时。在此,报道了具有卓越隔热性能的机械强度高且柔韧的气凝胶纤维,其通过构建硬 - 软拓扑聚合物网络和多级中空多孔结构实现。首次发现具有刚性链的聚酰胺 - 酰亚胺(PAI)与具有柔性链的聚氨酯(PU)的组合能够形成拓扑缠结结构。更重要的是,仅通过一步绿色湿法纺丝工艺就能同步构建多级中空孔。所得的PAI/PU@340气凝胶纤维表现出94.5 MPa的超高断裂强度和20%的断裂应变的超弹性性能。此外,它们可编织成导热系数低至25 mW/(m·K)的织物,并在极高温度(300°C)和极低温度(-191°C)下展现出优异的隔热性能,这表明它们是下一代隔热材料的有前景的候选者。

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