DocumentCode
1032371
Title
Magnetic properties of new manganese ferrites submicron particles
Author
Bendaoud, R. ; Tailhades, Philippe ; Fert, A.R. ; Bertrand, D. ; Redoulès, J.P. ; Rousset, Abel
Author_Institution
Laboratoire de Physique des Solides, associé au CNRS, INSA, Toulouse-Cedex, France.
Volume
23
Issue
6
fYear
1987
fDate
11/1/1987 12:00:00 AM
Firstpage
3869
Lastpage
3873
Abstract
New manganese defect metastable ferrites with spinal structure were prepared by oxidation at a temperature lower than 500°C of submicron manganese substituted magnetites, Fe3-x MNx O4 (
). X-ray diffraction measurements and thermal analysis studies have been carried out on these systems. Low-temperature magnetic measurements have also been carried out. With these studies, it has been possible to depict the cation distribution in substituted magnetites and oxidized compounds, and to understand the complex process of oxidation. In defect spinels, vacancies are formed not only from oxidation of Fe2+ions, but also of Mn2+and Mn3+ions. Manganese-rich compound with x = 0.97 having high content of Mn3+and Mn4+ions show an important increase in coercive force, which exceeds 700 Oe at 4.2 K.
). X-ray diffraction measurements and thermal analysis studies have been carried out on these systems. Low-temperature magnetic measurements have also been carried out. With these studies, it has been possible to depict the cation distribution in substituted magnetites and oxidized compounds, and to understand the complex process of oxidation. In defect spinels, vacancies are formed not only from oxidation of Fe2+ions, but also of Mn2+and Mn3+ions. Manganese-rich compound with x = 0.97 having high content of Mn3+and Mn4+ions show an important increase in coercive force, which exceeds 700 Oe at 4.2 K.Keywords
Ferrite materials/devices; Manganese materials/devices; Ferrites; Iron; Magnetic analysis; Magnetic properties; Magnetic variables measurement; Manganese; Metastasis; Oxidation; Temperature; X-ray diffraction;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1987.1065771
Filename
1065771
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