雷达
掩蔽
材料科学
带宽(计算)
声学
光电子学
物理
计算机科学
电信
超材料
作者
Liang Leilei,Chen Li,Xiuyue Yang,Ziming Chen,Baoshan Zhang,Yi Yang,Guangbin Ji
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-02-16
卷期号:24 (8): 2652-2660
被引量:32
标识
DOI:10.1021/acs.nanolett.4c00153
摘要
Ideal radar absorbing materials (RAMs) require instantaneous, programmable, and spontaneous adaptability to cope with a complex electromagnetic (EM) environment across the full working frequency. Despite various material systems and adaptive mechanisms having been demonstrated, it remains a formidable challenge to integrate these benefits simultaneously. Here, we present a pneumatic matrix that couples morphable MXene/elastomer conductors with dielectric spacers, which leverages controllable airflow to reconfigure the spatial structure between a flat sheet and a hemispherical crown while maintaining resistance stability via wrinkle folding and unfolding. The interdimensional reconfigurations drastically induce multiple resonance behavior, enabling the matrix remarkable frequency tunability (144.5%), ultrawide bandwidth (15 GHz), weak angular dependence (45° incidence), ultrafast responsiveness (∼30 ms), and excellent reproducibility (1000 cycles). With multichannel fluidic and conceptual automated control systems, the final pneumatic device demonstrates a multiplexed, programmable, and autonomous transformable mode that builds a promising platform for smart radar cloaking.
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