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An all-ceramic, anisotropic, and flexible aerogel insulation material

  • Lu An
  • , Jieyu Wang
  • , Donald Petit
  • , Jason N. Armstrong
  • , Karen Hanson
  • , Jason Hamilton
  • , Mauricio Souza
  • , Donghui Zhao
  • , Changning Li
  • , Yuzi Liu
  • , Yulong Huang
  • , Yong Hu
  • , Zheng Li
  • , Zefan Shao
  • , André Omer Desjarlais
  • , Shenqiang Ren
  • SUNY Buffalo
  • Unifrax Inc.
  • Argonne National Laboratory
  • Nanjing University of Aeronautics and Astronautics
  • Oak Ridge National Laboratory

Research output: Contribution to journalArticlepeer-review

127 Scopus citations

Abstract

To exploit the high-temperature superinsulation potential of anisotropic thermal management materials, the incorporation of ceramic aerogel into the aligned structural networks is indispensable. However, the long-standing obstacle to exploring ultralight superinsulation ceramic aerogels is the inaccessibility of its mechanical elasticity, stability, and anisotropic thermal insulation. In this study, we report a recoverable, flexible ceramic fiber-aerogel composite with anisotropic lamellar structure, where the interfacial cross-linking between ceramic fiber and aerogel is important in its superinsulation performance. The resulting ultralight aerogel composite exhibits a density of 0.05 g/cm3, large strain recovery (over 50%), and low thermal conductivity (0.0224 W m-1 K-1), while its hydrophobicity is achieved by in situ trichlorosilane coating with the water contact angle of 135°. The hygroscopic tests of such aerogel composites demonstrate a reversible thermal insulation. The mechanical elasticity and stability of the anisotropic composites, with its soundproof performance, shed light on the low-cost superelastic aerogel manufacturing with scalability for energy saving building applications.

Original languageEnglish
Pages (from-to)3828-3835
Number of pages8
JournalNano Letters
Volume20
Issue number5
DOIs
StatePublished - May 13 2020

Keywords

  • Anisotropic thermal insulation
  • Energy sustainability
  • Flexibility
  • Manufacturing

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