| Literature DB >> 34802169 |
Xiao-Feng Pan1, Bao Wu2, Huai-Ling Gao1, Si-Ming Chen1, YinBo Zhu2, LiChuan Zhou2, HengAn Wu2, Shu-Hong Yu1.
Abstract
Owing to their outstanding comprehensive performance, polyimide (PI) composite films are widely used on the external surfaces of spacecraft to protect them from the adverse conditions of low Earth orbit (LEO). However, current PI composite films have inadequate mechanical properties and atomic oxygen (AO) resistance. Herein, this work fabricates a new PI-based nanocomposite film with greatly enhanced mechanical properties and AO resistance by integrating mica nanosheets with PI into a unique double-layer nacre-inspired structure with a much higher density of mica nanosheets in the top layer. In addition, the unique microstructure and the intrinsic properties of mica also impart the nanocomposite film with favorable ultraviolet and high-temperature resistance. The comprehensive performance of this material is superior to those of pure PI, single-layer PI-mica, and previously reported PI-based composite films. Thus, the double-layer nanocomposite film displays great potential as an aerospace material for use in LEO.Entities:
Keywords: atomic oxygen resistance; double-layer nacre-inspired structures; mechanical stability; mica nanosheets; polyimide films
Year: 2021 PMID: 34802169 DOI: 10.1002/adma.202105299
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849