4.8 Article

Resilient Si3N4 Nanobelt Aerogel as Fire-Resistant and Electromagnetic Wave-Transparent Thermal Insulator

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 11, 期 17, 页码 15795-15803

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b02869

关键词

ceramic aerogels; electromagnetic wave transparency; resilient compressibility; fire resistance; thermal insulation

资金

  1. National Natural Science Foundation of China [51772237]
  2. Shaanxi Science & Technology co-ordination & Innovation project [2015KTCL01-13]
  3. Shaanxi Innovation Capacity Support Program [2018TD-031]
  4. Independent Innovation Capacity Improvement Plan of Xi'an Jiaotong University [PY3A033]

向作者/读者索取更多资源

With the prevailing energy challenges and the rapid development of aerospace engineering, high-performance thermal insulators with various functions are attracting more and more attention. Ceramic aerogels are promising candidates for thermal insulators to be applied in harsh environments because of their low thermal conductivity and simultaneously excellent thermal and chemical stabilities. In general, the effective properties of this class of materials depend on both their microstructures and the intrinsic properties of their building blocks. Herein, to enrich the family and broaden the application fields of this class of materials, we prepared ultralight alpha-Si3N4 nanobelt aerogels (NBAs) with tunable densities ranging from 1.8 to 9.6 mg cm(-3). The alpha-Si3N4 NBA realized resilient compressibility (with a recoverable strain of 40-80%), fire resistance (1200 degrees C butane blow torch), thermal insulation (0.029 W m(-1) K-1), and electronic wave transparency (a dielectric constant of 1-1.04 and a dielectric loss of 0.001-0.004) in one material, which makes it a promising candidate for mechanical energy dissipative, fire-resistant, and electronic wave-transparent thermal insulator to be applied in extreme conditions. The successful preparation of such resilient and multifunctional alpha-Si3N4 NBAs will open up a new world for the development and widespread applications of ceramic aerogels.

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