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Updated: Jan 10, 2026

Plasma-Assisted Molecular Beam Epitaxy Growth of Mg3N2 and Zn3N2 Thin Films
Published on: May 11, 2019
Effect of Mg2+ on Enhancing Stabilization and Microwave Absorption Performance of MgxFe3-xO4
Yu Du1, Jianning Sun1, Bin Li2
1State Key Laboratory of Advanced Metallurgy and School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Abstract:
Magnetite (Fe3O4) is an essential material for enhancing microwave absorption performance and is widespread and abundant as a solid solution in natural minerals and metallurgical slags. In this work, the effect of Mg2+ on the structure, stabilization, and microwave absorption performance of magnesium-containing magnetite (MgxFe3-xO4) was investigated. On the basis of experiments on the reactions of Fe2O3 and MgO under different levels of pCO/(pCO + pCO2), MgxFe3-xO4 (x=0.0,0.2,0.4,0.6,1.0) was synthesized, and Mg2+ was found to inhibit the re-oxidation of magnetite. On this basis, the microwave absorption performance of various synthesized MgxFe3-xO4 samples was measured and analyzed, where Mg2+ was found to enhance the microwave absorption performance of Fe3O4, and the RLmin value of Mg0.2Fe2.8O4 increased to -50.43 dB compared to that of -19.20 dB for Fe3O4. Furthermore, the enhancement mechanism of Mg2+ was revealed through impedance matching, dielectric and magnetic loss tangents, and magnetization curves, where the Mg2+ ions were found to accelerate the hopping of electrons and change the impedance matching of MgxFe3-xO4 to a more ideal state.
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