锰锌铁氧体及其应用的最新研究进展

IF 2.8 Q1 MATERIALS SCIENCE, CERAMICS Open Ceramics Pub Date : 2025-03-01 Epub Date: 2024-12-19 DOI:10.1016/j.oceram.2024.100732
Zhexue Chen , Teng Li , Anping Wang , Minxia Shi , Bangcheng Han
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引用次数: 0

摘要

锰锌铁氧体(MnZn ferrite)作为一种重要的陶瓷和软磁材料,因其独特的尖晶石晶体结构和优异的电磁性能而备受关注。这些令人着迷的材料被广泛应用于各个领域,如变压器、电感器、微波吸收、磁屏蔽和传感器。本文综述了锰锌铁氧体的合成方法、结构特点、磁性能及其广泛应用。讨论了固相反应、溶胶-凝胶和共沉淀法等合成策略,重点讨论了它们对MnZn铁氧体微观结构和磁性行为的影响。分析了不同制备条件对锰锌铁氧体的磁导率、饱和磁化强度、低功率损耗和矫顽力的影响。此外,还阐述了锰锌铁氧体的广泛应用,强调了其在现代技术中的重要意义。最后讨论了锰锌铁氧体未来发展的前景和面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The latest research progress on MnZn ferrite and their applications
Manganese zinc ferrite (MnZn ferrite), as an important ceramic and soft magnetic material, have attracted great interest due to their unique spinel crystalline structure and excellent electromagnetic properties. Such fascinating materials have been widely applied in various fields, such as transformers, inductors, microwave absorption, magnetic shielding, and sensors. This review provides a comprehensive overview of the synthesis methods, structural characteristics, magnetic properties, and extensive applications of MnZn ferrite. The synthetic strategies including solid-phase reaction, sol-gel, and co-precipitation are discussed, highlighting their impact on the microstructure and magnetic behavior of MnZn ferrite. The impact of different fabrication conditions on permeability, saturation magnetization, low power losses, and coercivity of MnZn ferrite are analyzed. In addition, the widespread applications of MnZn ferrite are explained, emphasizing its significance in modern technology. At the end, the perspectives and challenges toward the future development of MnZn ferrite are discussed.
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来源期刊
Open Ceramics
Open Ceramics Materials Science-Materials Chemistry
CiteScore
4.20
自引率
0.00%
发文量
102
审稿时长
67 days
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