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Tuning the ferromagnetic resonance by doping strontium hexa-ferrite nanopowders
by
Ebrahimi, Fatemeh
, Ashrafizadeh, Fakhreddin
in
Ambient temperature
/ Anisotropy
/ Ceramics
/ Chemistry and Materials Science
/ Coercivity
/ colloids
/ Composites
/ Doping
/ Electron microscopy
/ etc.
/ Ferrites
/ Ferromagnetic materials
/ Ferromagnetic resonance
/ fibers
/ Field emission microscopy
/ Glass
/ Inorganic Chemistry
/ Magnetic measurement
/ Magnetic properties
/ Magnetic saturation
/ Magnetism
/ Materials Science
/ Materials substitution
/ Microwave absorption
/ Microwave frequencies
/ Morphology
/ Nanotechnology
/ Natural Materials
/ Optical and Electronic Materials
/ Original Paper: Nano-structured materials (particles
/ Scanning electron microscopy
/ Sol-gel processes
/ Strontium
/ Superhigh frequencies
/ Titanium
/ X-ray diffraction
2018
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Tuning the ferromagnetic resonance by doping strontium hexa-ferrite nanopowders
by
Ebrahimi, Fatemeh
, Ashrafizadeh, Fakhreddin
in
Ambient temperature
/ Anisotropy
/ Ceramics
/ Chemistry and Materials Science
/ Coercivity
/ colloids
/ Composites
/ Doping
/ Electron microscopy
/ etc.
/ Ferrites
/ Ferromagnetic materials
/ Ferromagnetic resonance
/ fibers
/ Field emission microscopy
/ Glass
/ Inorganic Chemistry
/ Magnetic measurement
/ Magnetic properties
/ Magnetic saturation
/ Magnetism
/ Materials Science
/ Materials substitution
/ Microwave absorption
/ Microwave frequencies
/ Morphology
/ Nanotechnology
/ Natural Materials
/ Optical and Electronic Materials
/ Original Paper: Nano-structured materials (particles
/ Scanning electron microscopy
/ Sol-gel processes
/ Strontium
/ Superhigh frequencies
/ Titanium
/ X-ray diffraction
2018
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Tuning the ferromagnetic resonance by doping strontium hexa-ferrite nanopowders
by
Ebrahimi, Fatemeh
, Ashrafizadeh, Fakhreddin
in
Ambient temperature
/ Anisotropy
/ Ceramics
/ Chemistry and Materials Science
/ Coercivity
/ colloids
/ Composites
/ Doping
/ Electron microscopy
/ etc.
/ Ferrites
/ Ferromagnetic materials
/ Ferromagnetic resonance
/ fibers
/ Field emission microscopy
/ Glass
/ Inorganic Chemistry
/ Magnetic measurement
/ Magnetic properties
/ Magnetic saturation
/ Magnetism
/ Materials Science
/ Materials substitution
/ Microwave absorption
/ Microwave frequencies
/ Morphology
/ Nanotechnology
/ Natural Materials
/ Optical and Electronic Materials
/ Original Paper: Nano-structured materials (particles
/ Scanning electron microscopy
/ Sol-gel processes
/ Strontium
/ Superhigh frequencies
/ Titanium
/ X-ray diffraction
2018
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Tuning the ferromagnetic resonance by doping strontium hexa-ferrite nanopowders
Journal Article
Tuning the ferromagnetic resonance by doping strontium hexa-ferrite nanopowders
2018
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Overview
Mg–Ti substituted strontium hexa-ferrites nanopowders (SrFe
12−
x
(MgTi)
x
/2
O
19
,
x
= 0–3) were prepared by the sol–gel method. The morphology, structure and composition of the nanostructures were examined by field emission scanning electron microscopy (FESEM) and X-ray diffraction. The effect of Mg–Ti doping on the magnetic properties of the powders was investigated by vibrating sample magnetometry (VSM) and ferromagnetic resonance (FMR) at ambient temperature. Experimental results showed that the materials exhibit hexagonal structures with tunable magnetic properties. The saturation magnetization and the coercive field (
H
c
) decreased through the Mg and Ti substitution. FMR proved that by incorporation of Mg and Ti in strontium ferrite lattice, crystalline anisotropy, and microwave absorption can be tuned. SrFe
12−
x
(MgTi)
x
/2
O
19
ferrites are good candidate for applications at X-band microwave frequencies. A low field absorption signal was observed with the same phase as the FMR absorption in all doped ferrites.
Publisher
Springer US,Springer Nature B.V
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