材料科学
发射率
微波食品加热
光电子学
红外线的
电介质
电磁辐射
衰减
石墨烯
多光谱图像
选择性表面
纳米技术
等离子体子
表面等离子体子
太赫兹辐射
掩蔽
吸收(声学)
异质结
光学
离域电子
纳米材料
黑体辐射
超材料
极化(电化学)
电磁学
宽带
作者
Minghao Yang,Dongdong Liu,Sihao Dou,Zhiyuan Dan,Long Ma,Yuefeng Yan,Yunfei He,Xiaoxiao Huang,Boshi Gao,Bo Zhong
摘要
ABSTRACT Achieving radar‐infrared stealth compatibility and integrating dual stealth functionalities into a single material represents a long‐sought goal for advanced stealth systems. Herein, we synthesized ordered OBO triatomic‐terminated MXene via a flux‐assisted eutectic molten‐etching strategy and achieved multispectral electromagnetic response from microwave to infrared waves through ordered OBO surface terminations. In the microwave band, abundant polarization sites introduced by ordered OBO surface terminations induce excellent dielectric responses, thereby endowing the material with superior microwave attenuation properties—featuring an ultra‐broad effective absorption bandwidth (EAB) of 4.32 GHz and a minimized matching thickness of 1.55 mm. In the infrared band, OBO surface terminations form p‐π conjugation, enhancing electronic delocalization and suppressing electron scattering, thereby enabling incident infrared light to excite plasmon reflection. This further induces an excellent metallic‐like electrical response and yields an average emissivity as low as 0.4 across the 3–5 and 8–14 µm mid‐to‐far infrared atmospheric windows. Notably, a single material innovatively achieves radar‐infrared stealth compatibility through multispectral selectivity. This work pioneers the use of ordered polyatomic terminations to engineer spectrally selective electromagnetic responses in 2D materials, offering a novel single‐material solution for advanced multiband stealth technologies.
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