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Size-Dependent Magnetic and Magneto-Optical Properties of Bi-Doped Yttrium Iron Garnet Nanopowders
in
Annealing
/ Bismuth
/ Charge transfer
/ Coercivity
/ Crystallites
/ Crystals
/ Hysteresis loops
/ Iron
/ Magnetic materials
/ Magnetic properties
/ Magnetic saturation
/ Optical properties
/ Room temperature
/ Size effects
/ X-ray diffraction
/ Yttrium
/ Yttrium-iron garnet
2022
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Size-Dependent Magnetic and Magneto-Optical Properties of Bi-Doped Yttrium Iron Garnet Nanopowders
by
in
Annealing
/ Bismuth
/ Charge transfer
/ Coercivity
/ Crystallites
/ Crystals
/ Hysteresis loops
/ Iron
/ Magnetic materials
/ Magnetic properties
/ Magnetic saturation
/ Optical properties
/ Room temperature
/ Size effects
/ X-ray diffraction
/ Yttrium
/ Yttrium-iron garnet
2022
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Do you wish to request the book?
Size-Dependent Magnetic and Magneto-Optical Properties of Bi-Doped Yttrium Iron Garnet Nanopowders
in
Annealing
/ Bismuth
/ Charge transfer
/ Coercivity
/ Crystallites
/ Crystals
/ Hysteresis loops
/ Iron
/ Magnetic materials
/ Magnetic properties
/ Magnetic saturation
/ Optical properties
/ Room temperature
/ Size effects
/ X-ray diffraction
/ Yttrium
/ Yttrium-iron garnet
2022
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Size-Dependent Magnetic and Magneto-Optical Properties of Bi-Doped Yttrium Iron Garnet Nanopowders
Journal Article
Size-Dependent Magnetic and Magneto-Optical Properties of Bi-Doped Yttrium Iron Garnet Nanopowders
2022
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Overview
Bi-doped yttrium iron garnet nanopowders were successfully synthesized by a combustion method at different synthesis conditions, and the evolution of their structural, magnetic, and magneto-optical properties has been studied by various methods. X-ray diffraction analysis revealed that crystallite size increases with increase as in annealing time (tA) well as in annealing temperature (TA) and varied from 15.2 nm (TA = 650 °C, tA = 0.5 h) to 44.5 nm (TA = 800 °C, tA = 12 h). The magnetic hysteresis loops exhibit behavior characteristic of soft magnetic materials; herewith, the saturation magnetization demonstrates a growing trend with increasing crystallite size (D). The behavior of the coercivity indicates that, at room temperature, the transition between single-domain and multidomain states occurs at D = 35.3 nm. It was found that the size effect in the MCD spectra is clearly observed for the samples with crystallite sizes less than 42.2 nm for an intersublattice charge-transfer transition and a crystal-field tetrahedral transition. The influence of cation redistribution on the observed changes has been discussed.
Publisher
Springer Nature B.V
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