Flexible Hard Coatings with Self-Evolution Behavior in a Low Earth Orbit Environment

Dan Wang, Jusha Ma, Pengfei Li, Lin Fan, Yuemin Wu, Zongbo Zhang*, Caihong Xu, Lei Jiang

*Corresponding author for this work

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Abstract

Lightweight, long lifetime, and flexible polymer membrane-based structures, which are tightly folded on the ground and then unfolded in space, suffer from repeated bending before launching and fatal erosion on exposure to atomic oxygen (AO) in a low Earth orbit (LEO). Although various AO-resistant coatings have been developed, a coating that can simultaneously meet the critical requirements for the mechanical robustness and long-term protection of polymer membranes is rare. Here, we fabricated a coating with mechanical robustness and long-term space endurance, starting from an inorganic polymer precursor. A hybrid coating with a nanoscale polymer/silica bicontinuous phase is first prepared on the ground, which exhibits outstanding flexibility and excellent abrasion resistance. Then, the coating shows an in situ self-evolution behavior under AO and ultraviolet (UV) synergism to afford dense and crack-free silica coating with outstanding endurance. Our strategy displays great potential for protecting deployable membrane structures serving in the LEO.

Original languageEnglish
Pages (from-to)46003-46014
Number of pages12
JournalACS Applied Materials and Interfaces
Volume13
Issue number38
DOIs
Publication statusPublished - 29 Sept 2021
Externally publishedYes

Keywords

  • atomic oxygen
  • hard-yet-tough
  • hybrid coating
  • low Earth orbit
  • self-evolution

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Wang, D., Ma, J., Li, P., Fan, L., Wu, Y., Zhang, Z., Xu, C., & Jiang, L. (2021). Flexible Hard Coatings with Self-Evolution Behavior in a Low Earth Orbit Environment. ACS Applied Materials and Interfaces, 13(38), 46003-46014. https://doi.org/10.1021/acsami.1c13807