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Thermal annealing and grain boundary effects on ferromagnetism in Y 2 O3:Co diluted magnetic oxide nanocrystals
Journal article   Peer reviewed

Thermal annealing and grain boundary effects on ferromagnetism in Y 2 O3:Co diluted magnetic oxide nanocrystals

Y.L. Soo, T.S. Wu, C.S. Wang, S.L. Chang, H.Y. Lee, P.P. Chu, C.Y. Chen, L.J. Chou, T.S. Chan, C.A. Hsieh, …
Applied Physics Letters, Vol.98(3), 031906
17/01/2011

Abstract

Structures and magnetic properties of Y 2 O 3 :Co nanocrystals were investigated using high resolution transmission electron microscopy, x-ray diffraction, x-ray absorption fine structures, and superconducting quantum interference device. Cobalt atoms were found to be driven by thermal annealing from interstitial locations inside the Y 2 O 3 nanoparticles toward particle surface, where increased O vacancies surrounding Co atoms led to increased saturation magnetization. Our results strongly support a bound magnetic polaron model for ferromagnetism in diluted magnetic oxides mostly due to magnetic dopants located on the grain boundaries. © 2011 American Institute of Physics.

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