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Strong microwave absorption of Fe-deficient SrFe9.4Cu0.8Sn0.5O19-d with enhanced permittivity and ferromagnetic resonance by high annealing temperature.

Authors :
Liu, Bo
Li, Lun
Li, Kewei
Wang, Xiaoqiong
Tan, Yukun
Zhao, Shifeng
Zhou, Wenping
Xing, Shuya
Yang, Wenyun
Liu, Shunquan
Chang, Hong
Source :
Applied Physics Letters; 7/1/2024, Vol. 125 Issue 1, p1-7, 7p
Publication Year :
2024

Abstract

The oxygen environments of Fe<superscript>+3-δ</superscript> ions determine the magnetic anisotropy of M-type ferrites. The high annealing temperature increases the oxygen content and decreases the lattice strain in M-type SrFe<subscript>9.4</subscript>Cu<subscript>0.8</subscript>Sn<subscript>0.5</subscript>O<subscript>19-d</subscript> ferrites. The anisotropic field and the coercive field decrease with the increasing annealing temperature. Annealed at 1400 °C, a ferromagnetic resonance is observed at the frequency above 9.5 GHz, with the real part having a peak and the imaginary part of the permeability having a high plateau over a wide frequency range. It enables the microwave energy' dissipation by the magnetic loss. Furthermore, the extra oxygen ions ease up the dipole polarizations' rotation and significantly increase the dielectric permittivity. At thin thickness of 1.3 mm, the effective absorption bandwidth (R L ≤ − 10 dB) of SrFe<subscript>9.4</subscript>Cu<subscript>0.8</subscript>Sn<subscript>0.5</subscript>O<subscript>19-d</subscript> annealed at 1400 °C is 7.1+ GHz from 10.9 to 18+ GHz. SrFe<subscript>9.4</subscript>Cu<subscript>0.6</subscript>Sn<subscript>0.6</subscript>O<subscript>19-d</subscript> annealed at 1400 °C has the microwave absorption bandwidth of 8.8 GHz from 9.2 to 18+ GHz at 1.6 mm. Both are very promising microwave absorbing materials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00036951
Volume :
125
Issue :
1
Database :
Complementary Index
Journal :
Applied Physics Letters
Publication Type :
Academic Journal
Accession number :
178228176
Full Text :
https://doi.org/10.1063/5.0217446