Sichuan Province Chengdu City
Huayang Youjian Lao Qu Zhengxi Street No.162
Chengdu 610059, Sichuan 610213
China
Chengdu University of Technology
Y2O3, LiZn ferrites, Microstructure, Gyromagnetic properties
Y2O3, LiZn ferrites, microstructure, Gyromagnetic properties
LTCC, NiCuZn ferrites, Cr3+ substitution, Ferromagnetic resonance linewidth, V2O5-Bi2O3 additive
Microwave dielectric properties, MgAl₂O₄ ceramics, Cation distribution
millimeter-wave, cordierite, microwave dielectric ceramic, ultralow dielectric constant
High-entropy ceramics, High entropy effect, microwave dielectric properties, Oxygen vacancy, Bond characteristics
NiCuZn ferrites, V2O5-Bi2O3 additive, LTCC
LiZnTi ferrite, V2O5 Additive, FMR linewidth, LTCC
Gd3+ substitution, LiZnTi ferrites, FMR linewidth, Gyromagnetic properties
M-type hexaferrite, Sm3+-Cu2+ co-substitution, Orientation, Remanence ratio
Multiferroic hexaferrites, Pre-sintering temperature, Magnetoelectric effect
Keywords: LTCC, NiCuZn ferrites, Cr3+ substitution, Ferromagnetic resonance linewidth, V2O5-Bi2O3 additive
W-type hexaferrites, rare-earth ions substitution, c-axis orientation
high-entropy ceramics, inverse spinel structure, microwave dielectric properties
W-type hexaferrites, Magnetic properties, c-axis orientation
NiCuZn ferrites, LTCC, ZrO2, Gyromagnetic properties
Nb2O5, LiZnTi ferrites, FMR linewidth, Magnetic properties
NiCuZn ferrites, Grain growth, Bi2O3, Gyromagnetic properties
BaM, V2O5 introduce, Microstructure, magnetic properties, Circulators