4.6 Review

Recent Progress in Iron-Based Microwave Absorbing Composites: A Review and Prospective

期刊

MOLECULES
卷 27, 期 13, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27134117

关键词

Fe magnetic composites; microwave absorbing particles; controllable synthesis; microwave absorbing properties

资金

  1. National Natural Science Foundation of China [61901073]
  2. China Postdoctoral Science Foundation [2021MD703936]
  3. Innovation research group of universities in Chongqing [CXQT20016]
  4. Cooperation Project Between Undergraduate Universities in Chongqing and Institutions Affiliated to the Chinese Academy of Sciences [HZ2021018]

向作者/读者索取更多资源

With the growing concern over electromagnetic radiation pollution, the development of efficient electromagnetic wave absorbing materials has become urgent. Iron-based magnetic absorbent particle materials show excellent magnetic properties and electromagnetic wave loss ability, but also have certain disadvantages. Currently, morphology structure design and multi-component material composite are used to improve the microwave absorption performance. This review summarizes the research progress of iron-based absorbing materials and discusses the preparation methods, absorbing properties, and mechanisms in detail. The future development direction of these materials is also explored.
With the rapid development of communication technology in civil and military fields, the problem of electromagnetic radiation pollution caused by the electromagnetic wave becomes particularly prominent and brings great harm. It is urgent to explore efficient electromagnetic wave absorption materials to solve the problem of electromagnetic radiation pollution. Therefore, various absorbing materials have developed rapidly. Among them, iron (Fe) magnetic absorbent particle material with superior magnetic properties, high Snoek's cut-off frequency, saturation magnetization and Curie temperature, which shows excellent electromagnetic wave loss ability, are kinds of promising absorbing material. However, ferromagnetic particles have the disadvantages of poor impedance matching, easy oxidation, high density, and strong skin effect. In general, the two strategies of morphological structure design and multi-component material composite are utilized to improve the microwave absorption performance of Fe-based magnetic absorbent. Therefore, Fe-based microwave absorbing materials have been widely studied in microwave absorption. In this review, through the summary of the reports on Fe-based electromagnetic absorbing materials in recent years, the research progress of Fe-based absorbing materials is reviewed, and the preparation methods, absorbing properties and absorbing mechanisms of iron-based absorbing materials are discussed in detail from the aspects of different morphologies of Fe and Fe-based composite absorbers. Meanwhile, the future development direction of Fe-based absorbing materials is also prospected, providing a reference for the research and development of efficient electromagnetic wave absorbing materials with strong absorption performance, frequency bandwidth, light weight and thin thickness.

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