Ma Jing, Lü Yonghui, Wen Hua, Zhang Yupei, Wei Wei, Qin Guotong, Zhao Yong, Jiang Lei, Liu Lihong, Liu Shaomin
School of Space and Environment, Beihang University, Shahe Campus, Beijing 102206, China.
College of Biochemical Engineering, Beijing Union University, Beijing 100023, China.
iScience. 2022 Nov 21;25(12):105641. doi: 10.1016/j.isci.2022.105641. eCollection 2022 Dec 22.
Thermal superinsulation materials play a key role in reducing energy consumption. In this article, flexible polyimide aerogel-like films are developed by a facile non-solvent-induced phase separation combined with ambient drying method. The pore structure and insulation properties are well controlled by changing the compositions of the coagulation bath. Polyimide films with macro-nano hierarchical pore structure and uniform nanopores are prepared by adjusting the content of water and alcohol as the non-solvent. The relationship between the insulation performance and textured structure of polyimide was studied. After optimization, the produced film achieved a low thermal conductivity of 0.019 W⋅m·K but good tensile strength of 89.6 MPa, compared favorably with literature results. Hence, this article demonstrates that application of the facile phase inversion method to prepare porous polymers can be expanded from desalination or gas separation fields to insulation for energy-saving purposes.
热超绝缘材料在降低能源消耗方面发挥着关键作用。在本文中,通过简便的非溶剂诱导相分离结合常压干燥法制备了柔性聚酰亚胺气凝胶状薄膜。通过改变凝固浴的组成,可以很好地控制其孔隙结构和绝缘性能。通过调节作为非溶剂的水和醇的含量,制备出具有宏观-纳米分级孔隙结构和均匀纳米孔的聚酰亚胺薄膜。研究了聚酰亚胺的绝缘性能与织构结构之间的关系。经过优化,所制备的薄膜实现了0.019W·m⁻¹·K的低热导率以及89.6MPa的良好拉伸强度,与文献报道的结果相比具有优势。因此,本文表明,将简便的相转化方法应用于制备多孔聚合物可从脱盐或气体分离领域扩展到节能绝缘领域。