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Garskaite, E., Gibson, K., Leleckaite, A., Glaser, J., Niznansky, D., Kareiva, A. and Meyer, H.J. (2006) On the Synthesis and Characterization of Iron-Containing Garnets (Y3Fe5O12, YIG and Fe3Al5O12, IAG). Chemical Physics, 323, 204-210.
http://dx.doi.org/10.1016/j.chemphys.2005.08.055
has been cited by the following article:
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TITLE:
Mechano-Synthesized Orthoferrite Starting from Wüstite Assisted by SPS
AUTHORS:
Claudia Alicia Cortés-Escobedo, Félix Sánchez-De Jesus, Ana María Bolarín-Miró, Sophie Nowak, Elizabeth Piazzini Juárez-Camacho, Sebastián Díaz de la Torre, Raúl Valenzuela
KEYWORDS:
Wüstite; Orthoferrite; Mechano-Synthesis; SPS; Magnetic Properties
JOURNAL NAME:
Advances in Materials Physics and Chemistry,
Vol.4 No.3,
March
19,
2014
ABSTRACT: Stoichiometric mixtures of FeO and Y2O3 were milled and heat treated to obtain yttrium iron garnet, Y3Fe5O12.
Two types of heating systems were used: one, a spark plasma sintering machine
and the second, an electrical oven. The magnetic properties of the resulting
specimens have been analyzed and discussed as a function of the grain size and
the particles’ morphology. The partial formation of garnet and orthoferrite
phases was revealed on the obtained powder through microstructural analyses
after 9 h of ball milling. The milled powders were transformed into the orthoferrite
phase after the SPS-treatment at 700°C and 900°C. Magnetic-saturation studies
revealed magnetic responses up to 12.7 emu/g for specimens SPS-treated at 700°C,
whereas 2.1 emu/g for samples SPS-treated at 900°C. Conventionally treated
specimens at 700°C developed 0.36 emu/g of magnetization, while 0.93 emu/g was
registered for those treated at 900°C.