Xinhui Li,Hang Cheng,Menglin Yu,Fengyuan Shen,Hongyan Li,Xianguo Liu
出处
期刊:Journal of Physics D [IOP Publishing] 日期:2023-07-10卷期号:56 (42): 425001-425001被引量:4
标识
DOI:10.1088/1361-6463/ace5ba
摘要
Abstract Constructing multi-interfaces is an effective strategy for realizing thin, wide, strong, and stable microwave absorbers. In this work, FeNi/Fe 2 O 3 @Al 2 O 3 @C nanocomposites have been prepared; in their microstructure, FeNi nanoparticles with a diameter of ∼20 nm and Fe 2 O 3 nanoparticles with a size of ∼5 nm are dispersed in an Al 2 O 3 µ m scale rod covered by a carbon layer, in which the multi-interfaces of FeNi–Al 2 O 3 , FeNi–Fe 2 O 3 , Fe 2 O 3 –Al 2 O 3 , and Al 2 O 3 –C are constructed. Proper impedance matching, quarter-wavelength interference cancellation, and integrated electromagnetic (EM) loss capacity can be realized through optimization of the EM parameters accompanied with a multi-interface structure, resulting in good microwave-absorption behaviors with the merits of being broad, strong, thin, and stable. The nanocomposites have −49.6 dB of minimal reflection loss (RL m ) at 3.2 mm 5.44 GHz (12.56–18 GHz) of effective absorption bandwidth at 2.1 mm and a RL m exceeding −10 dB at 1.6–10 mm and −20 dB at 1.8–10 mm. These results demonstrate that constructing multi-interfaces plays a guiding role in obtaining superior microwave absorbers.