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Dielectric-magnetic synergy in ferrite/carbon composites for electromagnetic microwave absorption

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摘要 With the advancement of communication technology and electronics,electromagnetic pollution and associated electromagnetic concerns have become a significant global environmental issue.This necessitates the urgent design and fabrication of electromagnetic microwave absorption materials to meet the rising and diverse application requirements.Ferrite/carbon composites have drawn significant interest in microwave absorption due to their intriguing merits.Specifically,these composites are capable of inducing a magnetic-dielectric synergy loss mechanism,integrating the dielectric loss characteristics of carbon materials with the substantial magnetic loss capacity of ferrites.Herein,we aim to comprehensively review the foundational and research advancements of ferrite/carbon composites from the last few years.At first,we provided an in-depth explanation of the principles behind the magnetic-dielectric synergy loss mechanism.Subsequently,we thoroughly evaluated the design and application of magnetic-dielectric synergy in ferrite/carbon composites,encompassing both spinel ferrite/carbon composites and hexagonal ferrite/carbon composites.At last,the current challenges and prospects of ferrite/carbon composites were discussed.It is hoped that the present review could offer a fundamental understanding of ferrite/carbon composites for microwave absorption and propose guidelines for the development of novel microwave absorbers.
出处 《Nano Research》 2025年第11期581-606,共26页 纳米研究(英文版)
基金 supported by the financial support from the project funded by the Education Department of Shaanxi Provincial Government(No.23JP116) the Natural Science Fund of Shaanxi Province(No.2024JC-YBMS-396) the National Natural Science Foundation of China(Nos.52171191,52371198,and 52174373) the Constructing National Independent Innovation Demonstration Zones(No.XM2024XTGXQ05).
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