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铁基微波吸收复合材料的研究进展:综述与展望

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

作者信息

Zheng Wei, Ye Wenxian, Yang Pingan, Wang Dashuang, Xiong Yuting, Liu Zhiyong, Qi Jindong, Zhang Yuxin

机构信息

China Academy of Space Technology (Xi'an), Institute of Space Antenna, Xi'an 710100, China.

School of Automation, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.

出版信息

Molecules. 2022 Jun 27;27(13):4117. doi: 10.3390/molecules27134117.

Abstract

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.

摘要

随着民用和军事领域通信技术的飞速发展,电磁波引起的电磁辐射污染问题变得尤为突出,并带来极大危害。迫切需要探索高效的电磁波吸收材料来解决电磁辐射污染问题。因此,各种吸收材料迅速发展。其中,具有优异磁性能、高斯耐克截止频率、饱和磁化强度和居里温度的铁(Fe)磁性吸收颗粒材料表现出优异的电磁波损耗能力,是一类很有前景的吸收材料。然而,铁磁颗粒存在阻抗匹配差、易氧化、密度高和趋肤效应强等缺点。一般来说,利用形态结构设计和多组分材料复合这两种策略来提高铁基磁性吸收剂的微波吸收性能。因此,铁基微波吸收材料在微波吸收方面得到了广泛研究。在本综述中,通过总结近年来关于铁基电磁吸收材料的报道,对铁基吸收材料的研究进展进行了综述,并从铁及铁基复合吸收体的不同形态方面详细讨论了铁基吸收材料的制备方法、吸收性能和吸收机制。同时,对铁基吸收材料的未来发展方向进行了展望,为研发具有强吸收性能、宽频带、轻质和薄厚度的高效电磁波吸收材料提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcfb/9268069/b4f753ea6ad9/molecules-27-04117-g001.jpg

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