IFLP   13074
INSTITUTO DE FISICA LA PLATA
Unidad Ejecutora - UE
artículos
Título:
The Morin transition in nanostructured pseudocubic hematite: Effect of the intercrystallite magnetic exchange
Autor/es:
J. F. BENGOA; A. M. ALVAREZ; A. E. BIANCHI; G. PUNTE; R.E. VANDENBERGHE; R. C. MERCADER; G. MARCHETTI
Revista:
MATERIALS CHEMISTRY AND PHYSICS
Editorial:
ELSEVIER SCIENCE SA
Referencias:
Año: 2010 vol. 123 p. 191 - 198
ISSN:
0254-0584
Resumen:
The Morin transition in alfa-Fe2O3 particles with homogeneous pseudocubic morphology of about 1.8micro m side has been studied by different techniques. The particles are made up of nanometric crystallites with a narrow size distribution. Samples annealed at 673, 773 and 873 K, yielded Morin transition temperatures, TM, of about 230, 241, and 245 K, respectively, which are lower than the bulk value, TM aproximately 263 K. In addition, the temperature range, deltaTM, through which these samples undergo the transition is very narrow with respect to the values reported in the literature. Ranges of 20, 10 and 8K, were obtained for the samples annealed at 673, 773 and 873 K. In this work, through the estimation of the exchange magnetic energy, we demonstrate that the existence of the Morin transition, and its shift and breadth are related to the presence of intercrystallite interactions within the pseudocubic particles. These intercrystallite interactions are modified by the annealing treatments, which help to remove non-stoichiometric hydroxyl groups and incorporated water molecules.