陶瓷
材料科学
微观结构
复合材料
超材料
宽带
氮化硼
吸收(声学)
复合数
电磁辐射
光电子学
光学
物理
作者
Mengyu Dai,Yujun Jia,Yumeng Deng,Bin Ren,Sijian Liu,Qian Wang,Yan Lin,Junjie Cheng,Hejun Li
出处
期刊:Small
[Wiley]
日期:2024-10-12
标识
DOI:10.1002/smll.202405364
摘要
Abstract Broadband electromagnetic wave (EMW) absorbing ceramic materials are highly required for the thermal parts of aerocraft. As members of ultrahigh temperature ceramics, ZrB 2 ‐based ceramics have great potential for applications in more extreme environments relative to the currently used silicon‐based and oxide‐based ceramics. However, ZrB 2 is not among the traditional EMW absorbing material candidates due to its high conductivity, which induces the strong reflection of EMW due to the impedance mismatch with free space. Herein, ZrB 2 ‐based ceramic with a bionic microstructure inspired by peacock barbules is proposed. Boron nitride nanotubes acting as polarization centers inside the ZrB 2 ‐based material cause massive EMW dissipation. The ceramic shows an ultra‐broadband absorption of 9.6 GHz (<−10 dB from 8.4 to 18 GHz), almost covering the entire X and Ku bands, superior to the reported ceramics. The polarization centers successfully turn the ZrB 2 ‐based ceramic from EMW reflecting material to an excellent EMW absorbing material by the bionic barbule interspersed microstructure. The simulated metamaterial of the ceramic achieves an ultra‐broad absorption (lower than −15 dB) in the range of 2–40 GHz. This work provides valuable insights for the development of broadband absorption material for high‐temperature environments.
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