无机材料学报

• 研究论文 •    

界面极化增强SiO2@SiC/ZnFe2O4复合材料电磁吸收性能

管洪涛, 张峻宁, 盖雨蒙, 兰雨莎, 陈刚   

  1. 云南大学 材料与能源学院, 昆明 650091
  • 收稿日期:2026-04-02 修回日期:2026-06-14
  • 作者简介:管洪涛,教授.E-mail:htguan06@ynu.edu.cn
  • 基金资助:
    国家自然科学基金(22165032);云南大学大学生创新训练项目(202410673115)

Enhanced Electromagnetic Absorption of SiO2@SiC/ZnFe2O4 Composites via Improved Interfacial Polarization

GUAN Hongtao, ZHANG Junning, GAI Yumeng, LAN Yusha, CHEN Gang   

  1. School of Materials and Energy, Yunnan University, Kunming 650091, China
  • Received:2026-04-02 Revised:2026-06-14
  • About author:GUAN Hongtao, Professor. E-mail: htguan06@ynu.edu.cn
  • Supported by:
    National Natural Science Foundation of China (22165032); Yunnan University undergraduate Innovation Training Program (202410673115)

摘要: 为实现优异的微波吸收性能,吸收材料需要同时具备良好的阻抗匹配特性和电磁波衰减能力。通过透波材料包覆提高界面极化,并引入磁性组分增强介电-磁性耦合效应,可获得优异的吸波效果。本研究以乙醇与水的混合溶液为溶剂,通过溶胶-凝胶法合成了SiO2@SiC复合结构,进而通过烧结工艺制备了SiO2@SiC/ZnFe2O4三元复合材料。系统研究了乙醇与水的体积比 (V乙醇/V, 记为VA/W) 对SiO2@SiC结构及电磁参数的影响,并进一步研究了不同ZnFe2O4含量对三元复合材料微波吸收性能的调控规律。实验结果表明:二元SiO2@SiC复合材料仅限于介电损耗机制,阻抗匹配欠佳,吸波性能有限,仅在VA/W = 3:1时获得-13 dB的吸收峰值。引入ZnFe2O4后,复合材料的界面极化和介电损耗显著增强,阻抗匹配得到改善,从而获得了优异的吸波性能。当VA/W = 1:1、匹配厚度为2.5 mm时,三元复合材料的最低反射损耗 (RLmin) 达到-48.2 dB;当VA/W = 5:2时,有效吸收带宽 (EAB) 达到6.7 GHz。该优异性能主要归因于ZnFe2O4纳米颗粒与SiO2、SiC之间构建的大量异质界面所引发的界面极化效应,以及磁性组分的引入对阻抗匹配的优化作用。

关键词: 碳化硅, 界面极化, 吸波性能, 铁酸锌

Abstract: To achieve superior microwave absorption performance, electromagnetic absorbing materials must possess both excellent impedance matching and strong attenuation capability. Outstanding absorption results can be attained by employing microwave-transparent material coatings to enhance interfacial polarization and by incorporating magnetic components for dielectric-magnetic coupling effects. In this study, binary SiO2@SiC composites were synthesized via a sol-gel method using an ethanol-water mixed solvent. Subsequently, SiO2@SiC/ZnFe2O4 ternary composites were prepared through a following sintering process. The influence of the ethanol-to-water volume ratio (VA/W) on the structure and electromagnetic parameters of SiO2@SiC was systematically investigated, and the microwave absorption properties of the ternary composites were further tuned by varying the ZnFe2O4 content. The results indicate that the binary SiO2@SiC composites exhibited limited absorption performance due to its weak dielectric attenuation capacity, achieving a minimum reflection loss (RLmin) of only -13 dB at VA/W = 3:1. Upon incorporation of ZnFe2O4, the dielectric loss of the composites was significantly enhanced, and the impedance matching was effectively improved. The optimized ternary composite achieved an RLmin of -48.2 dB at a matching thickness of 2.5 mm with VA/W = 1:1. Meanwhile an effective absorption bandwidth (EAB) of 6.7 GHz was obtained at VA/W = 5:2. These excellent absorption properties are primarily attributed to the strong interfacial polarization arising from the abundant heterogeneous interfaces constructed among ZnFe2O4 nanoparticles, SiO2, and SiC, as well as the optimized impedance matching enabled by the dielectric-magnetic synergistic coupling.

Key words: SiC, interfacial polarization, electromagnetic absorption, ZnFe2O4 ferrite

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