MIL-53(Fe) derived MCC/rGO nanoparticles with excellent broadband microwave absorption properties

Ling Ding, Ying Huang, Zhipeng Xu, Jing Yan, Xudong Liu, Tiehu Li, Panbo Liu

科研成果: 期刊稿件文章同行评审

24 引用 (Scopus)

摘要

High efficient MIL-53(Fe) derived γ-Fe2O3 coated by carbon framework (MCC for short) and compound with reduced graphene oxide for broadband microwave absorption is prepared by facile hydrothermal method and gradient temperature calcination. The sheets/bowknot-shaped nanoparticles structure have better microwave absorption performance via uniting magnetic γ-Fe2O3 core, carbon skeleton and rGO sheets. Binary material calcined at 600°C has an optimal RL value −62.53dB under 2.66mm thickness. In addition, the ternary MCC/rGO of 700°C calcination has better performance with an 11.68GHz effective absorption bandwidth (from 6.32GHz to 18GHz) of a single thickness of 3.60mm, and a maximum RL of −43.13dB at 3.25mm thickness. The MOF framework enhances particle stability and internal scattering, while graphene provides a larger absorption surface, coupled with the good impedance matching rooted in suitable permittivity and permeability, the material is an ideal new type of absorbing material.

源语言英语
文章编号100362
期刊Composites Communications
21
DOI
出版状态已出版 - 10月 2020

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