材料科学
煅烧
反射损耗
微波食品加热
纳米复合材料
多孔性
吸收(声学)
涂层
复合材料
化学工程
复合数
催化作用
化学
有机化学
物理
工程类
量子力学
作者
Xiaokang Wang,Panpan Zhou,Guang Qiu,Xiyue Zhang,Lixi Wang,Qitu Zhang,Meng Wang,Zhihao Liu
标识
DOI:10.1016/j.jallcom.2020.155807
摘要
Metal-organic-frameworks (MOFs) have attracted wide attention in the preparation of microwave absorbing materials because of their developed abundant porous structures. Compositing magnetic oxide into MOFs could significantly enhance the microwave absorption ability. In this work, a CoO/[email protected] nanocomposite was prepared by calcining a needle-shaped Co(OH)2@ZIF-67 template at different pyrolysis temperatures (500–650 °C). Furthermore, CoO and Co particles were embedded into porous carbon frameworks, creating ample surfaces and interfaces. The core-shell and porous structure is beneficial to microwave absorption (MA). In addition, it is obvious that the calcination temperature has a significant impact on the microwave absorption properties of the samples. In detail, when the calcination temperature is 550 °C, the samples exhibit the best microwave absorption properties. A minimum reflection loss (RLmin) of −38.46 dB is obtained at 16.12 GHz with a coating thickness of 1.5 mm, and the maximum effective absorption bandwidth (RL ≤ −10 dB) can reach 4.8 GHz (9.68–14.48 GHz) at a coating thickness of 2 mm. Such excellent MA properties are attributed to the outstanding magnetoelectric synergistic effect and well-matched impedance.
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