材料科学
反射损耗
多孔性
微波食品加热
碳化
复合数
吸收(声学)
复合材料
碳纤维
异质结
钒
金属有机骨架
散射
光电子学
光学
冶金
物理
量子力学
扫描电子显微镜
化学
有机化学
吸附
作者
Anqi Ni,Zhiqiang Xiong,Yingna Zhang,Jiang Xiao,Xin Li,Chongbo Liu,Xiaojun Zeng
出处
期刊:Carbon
[Elsevier]
日期:2024-02-13
卷期号:221: 118930-118930
被引量:21
标识
DOI:10.1016/j.carbon.2024.118930
摘要
Over the recent years, carbon materials derived from biomass have gained extensive interest owing to their structural diversity and high porosity. In this work, butterfly wings (BWs) with concave-cavity-array structure and vanadium-containing metal-organic framework (V-MOF) are selected as precursors, and a rail-like heterostructure composed of V2O3@C/BWs derived carbon (BWC) composite is constructed by a facile solvothermal reaction and one-step carbonization procedure. The unique concave-cavity-array structure of BWs is conducive to multiple reflections and scattering of electromagnetic waves (EMWs). Moreover, the V-MOF derived V2O3@C microspheres are uniformly dispersed on the surface and concave cavities of BWC, which generates abundant heterogeneous interfaces and boosts the interfacial polarization. The results show that the minimum reflection loss of V2O3@C/BWC composites reaches −59.3 dB, and the effective absorption bandwidth is up to 6.56 GHz, which covers the entire Ku-band. In addition, under the incidence angle of 15°, the maximum radar cross section reduction value of V2O3@C/BWC materials is found to be 43 dB m2. Overall, this work provides a new approach to develop carbon-based EMW absorbers with strong and ultra-wideband absorption.
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