材料科学
复合材料
微波食品加热
电阻式触摸屏
电介质
制作
陶瓷
热稳定性
保温
温度系数
介电损耗
热膨胀
热冲击
气凝胶
宽带
比模量
吸收(声学)
热导率
模数
热的
超材料
压电
介电常数
抗压强度
压缩(物理)
量子隧道
热阻
复合数
工作(物理)
射弹
材料性能
电阻和电导
弹性模量
耗散因子
间断(语言学)
作者
Xin-yuan Lv,Qiujin Gu,Shengchi Zhu,Xun Sun,Minglong Yang,Tao Liu,Yunpeng Ma,Zhen-xin Cao,Haitao Liu
标识
DOI:10.1038/s41467-025-66317-3
摘要
Abstract The metamaterials offer methodology and infinite possibilities for ultra-broadband microwave absorption (MA). However, maintaining stable broadband MA under extreme high-temperature environments remains one of the most cutting-edge challenges. Herein, we report a RuO 2 /glass resistive material for the fabrication of microwave-absorbing metasurfaces. Based on tunneling effect, an ultra-low temperature coefficient of resistance was achieved in RuO 2 /glass, resulting in temperature-insensitivity of its electrical properties, thereby ensuring stability of MA properties of metasurfaces against temperature. Furthermore, using low-dielectric alumina aerogel composites and Al 2 O 3f /Al 2 O 3 ceramic composites as dielectric spacer layer, we propose the multifunctional composites integrated with MA, thermal insulation and load-bearing (MTL). The MTL integrated composites show an impressive broadband (2~12 GHz) MA performance that is ultra-robust against temperature variations (25~1000 °C), thermal shock (50 cycles at 25~1000 °C), incidence angle (±45°) and polarization. Additionally, the integrated composites also demonstrate a long-term thermal insulation ability and a high compressive modulus (6.58 MPa). This advancement provides insights for developing MA materials that can work in extreme multi-field environments.
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