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High-entropy spinel ferrites MFe2O4 (M = Mg, Mn, Fe, Co, Ni, Cu, Zn) with tunable electromagnetic properties and strong microwave absorption
by
Ma, Jiabin
, Xiang, Huimin
, Dai, Fu-Zhi
, Liu, Yi
, Zhou, Yanchun
, Zhao, Biao
, Zhang, Rui
in
Ceramics
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Composites
/ Copper
/ Dielectric loss
/ Dielectric properties
/ electromagnetic (EM) wave absorption
/ Electromagnetic properties
/ Entropy
/ Ferrites
/ Glass
/ high-entropy ceramics (HECs)
/ magnetic loss
/ Magnetic properties
/ Manganese
/ Materials Science
/ Microwave absorption
/ Nanotechnology
/ Natural Materials
/ Research Article
/ Spinel
/ spinel-type ferrite
/ Structural Materials
/ Thickness
2022
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High-entropy spinel ferrites MFe2O4 (M = Mg, Mn, Fe, Co, Ni, Cu, Zn) with tunable electromagnetic properties and strong microwave absorption
by
Ma, Jiabin
, Xiang, Huimin
, Dai, Fu-Zhi
, Liu, Yi
, Zhou, Yanchun
, Zhao, Biao
, Zhang, Rui
in
Ceramics
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Composites
/ Copper
/ Dielectric loss
/ Dielectric properties
/ electromagnetic (EM) wave absorption
/ Electromagnetic properties
/ Entropy
/ Ferrites
/ Glass
/ high-entropy ceramics (HECs)
/ magnetic loss
/ Magnetic properties
/ Manganese
/ Materials Science
/ Microwave absorption
/ Nanotechnology
/ Natural Materials
/ Research Article
/ Spinel
/ spinel-type ferrite
/ Structural Materials
/ Thickness
2022
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High-entropy spinel ferrites MFe2O4 (M = Mg, Mn, Fe, Co, Ni, Cu, Zn) with tunable electromagnetic properties and strong microwave absorption
by
Ma, Jiabin
, Xiang, Huimin
, Dai, Fu-Zhi
, Liu, Yi
, Zhou, Yanchun
, Zhao, Biao
, Zhang, Rui
in
Ceramics
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Composites
/ Copper
/ Dielectric loss
/ Dielectric properties
/ electromagnetic (EM) wave absorption
/ Electromagnetic properties
/ Entropy
/ Ferrites
/ Glass
/ high-entropy ceramics (HECs)
/ magnetic loss
/ Magnetic properties
/ Manganese
/ Materials Science
/ Microwave absorption
/ Nanotechnology
/ Natural Materials
/ Research Article
/ Spinel
/ spinel-type ferrite
/ Structural Materials
/ Thickness
2022
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High-entropy spinel ferrites MFe2O4 (M = Mg, Mn, Fe, Co, Ni, Cu, Zn) with tunable electromagnetic properties and strong microwave absorption
Journal Article
High-entropy spinel ferrites MFe2O4 (M = Mg, Mn, Fe, Co, Ni, Cu, Zn) with tunable electromagnetic properties and strong microwave absorption
2022
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Overview
Ferrites are the most widely used microwave absorbing materials to deal with the threat of electromagnetic (EM) pollution. However, the lack of sufficient dielectric loss capacity is the main challenge that limits their applications. To cope with this challenge, three high-entropy (HE) spinel-type ferrite ceramics including (Mg
0.2
Mn
0.2
Fe
0.2
Co
0.2
Ni
0.2
)Fe
2
O
4
, (Mg
0.2
Fe
0.2
Co
0.2
Ni
0.2
Cu
0.2
)Fe
2
O
4
, and (Mg
0.2
Fe
0.2
Co
0.2
Ni
0.2
Zn
0.2
)Fe
2
O
4
were designed and successfully prepared through solid state synthesis. The results show that all three HE MFe
2
O
4
samples exhibit synergetic dielectric loss and magnetic loss. The good magnetic loss ability is due to the presence of magnetic components; while the enhanced dielectric properties are attributed to nano-domain, hopping mechanism of resonance effect and HE effect. Among three HE spinels, (Mg
0.2
Mn
0.2
Fe
0.2
Co
0.2
Ni
0.2
)Fe
2
O
4
shows the best EM wave absorption performance, e.g., its minimum reflection loss (RL
min
) reaches −35.10 dB at 6.78 GHz with a thickness of 3.5 mm, and the optimized effective absorption bandwidth (EAB) is 7.48 GHz from 8.48 to 15.96 GHz at the thickness of 2.4 mm. Due to the easy preparation and strong EM dissipation ability, HE MFe
2
O
4
are promising as a new type of EM absorption materials.
Publisher
Tsinghua University Press
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