材料科学
衰减
反射损耗
双金属片
电磁辐射
复合数
阻抗匹配
微波食品加热
吸收(声学)
复合材料
金属
光电子学
电阻抗
光学
冶金
工程类
物理
电气工程
量子力学
作者
Fu Chen,Shanshan Zhang,Beibei Ma,Yao Xiong,Hui Luo,Yongzhi Cheng,Xiangcheng Li,Xian Wang,Rongzhou Gong
标识
DOI:10.1016/j.cej.2021.134007
摘要
Microwave absorbing materials with excellent electromagnetic wave attenuation have been applied to address electromagnetic pollution. In this work, bimetallic [email protected]3C2Tx MXene derived multiple-interfacial composites with controllable structures were prepared via solvothermal, electrostatic self-assembly and thermal treatment. The morphology conversion, phase compositions, defects quantity were achieved by the thermal treatment temperature. The synthesized core-shelled CoFe/[email protected]2/C composite exhibits excellent microwave absorption properties. The minimum reflection loss values at different absorber thicknesses can reach −20 dB within 1.6–5.0 mm and the effective absorption bandwidth can reach 6.1 GHz with an absorber thickness of only 2.0 mm. The corresponding electric loss, magnetic loss and impedance matching have also been studied to explore the electromagnetic wave attenuation mechanisms. This work lays a good foundation of MOF and MXene composites derivatives as microwave absorber and opens up a way for the design of the high-performance Microwave absorbing materials.
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