Improvement of co-frequency synergy between dielectric and magnetic losses of core–shell Fe3O4@C composites for enhancing their microwave absorption properties

被引:0
|
作者
Jingxiong Dai
Guangliang Xu
机构
[1] Southwest University of Science and Technology,State Key Laboratory of Environment
[2] Southwest University of Science and Technology,Friendly Energy Materials
[3] Southwest University of Science and Technology,School of Materials and Chemistry
来源
Applied Physics A | 2023年 / 129卷
关键词
Electromagnetic synergy; Fe; O; @C; Microwave absorption; Impedance matching;
D O I
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中图分类号
学科分类号
摘要
Core–shell Fe3O4@C composite with nano and submicron Fe3O4 core structures was prepared by vacuum heat treatment of Fe2O3@phenolic resin (Fe2O3@PR) precursor. The multi-scale core structures confer the composite with improved electromagnetic synergy. As a result, the composite exhibits optimized impedance matching, strong attenuation capability, and excellent microwave absorption properties. In the high-frequency (10–18 GHz) band, its minimum reflection loss (RL, RL value below − 10 dB represents above 90% microwave absorption) is − 54.45 dB and effective absorption bandwidth (EAB, frequency range of RL < − 10 dB) is 6.34 GHz. In the low-frequency (2–10 GHz) band, the obtained minimum RL and EAB are − 53.57 dB and 3.38 GHz, respectively. These results suggest that the multi-scale core structures can effectively enhance the microwave absorption properties of core–shell Fe3O4@C composites and it may be an effective idea for the design of high-performance microwave absorption materials.
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