材料科学
微波食品加热
多孔性
反射损耗
微球
退火(玻璃)
衰减
化学工程
复合材料
阻抗匹配
光电子学
吸收(声学)
电阻抗
复合数
光学
物理
量子力学
工程类
电气工程
作者
Yang Liu,Zhuo Chen,Wenhan Xie,Feng Qiu,Yang Zhang,Shaokun Song,Chuanxi Xiong,Lijie Dong
标识
DOI:10.1016/j.jallcom.2019.151837
摘要
Abstract Microwave absorbers with broadband absorption and lightweight features are highly desirable in electromagnetic interference and pollution treatment. Here, porous and hollow CoNi@C (CNC) microspheres derived from metal-organic frameworks (MOFs) are fabricated by a facile solvothermal route and subsequent annealing process. The morphology, structure, microwave absorption properties and their internal relationship are systematically investigated. For the porous and hollow CNC microspheres, the minimum RL can reach −44.8 dB at 10.7 GHz and the ultra-wide effective absorption bandwidth can reach up to 13.3 GHz (4.7–18.0 GHz) within the thickness of 1.6–4.0 mm. The CNC microspheres exhibit superior microwave absorption performance, attributing to the improved impedance matching and attenuation ability. The hollow structure, interfacial polarization, the synergistic effect between CoNi alloy and graphitized carbon simultaneously account for the microwave absorption mechanisms. Therefore, the present work provides the promising options on the design and preparation of lightweight and high-efficient microwave absorber with tunable component and specific morphology.
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