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Magnetic superlattices and their nanoscale phase transition effects.


ABSTRACT: The systematic assembly of nanoscale constituents into highly ordered superlattices is of significant interest because of the potential of their multifunctionalities and the discovery of new collective properties. However, successful observations of such superlattice-associated nanoscale phenomena are still elusive. Here, we present magnetic superlattices of Co and Fe(3)O(4) nanoparticles with multidimensional symmetry of either AB (NaCl) or AB(2) (AlB(2)). The discovery of significant enhancement (approximately 25 times) of ferrimagnetism is further revealed by forming previously undescribed superlattices of magnetically soft-hard Fe(3)O(4)@CoFe(2)O(4) through the confined geometrical effect of thermally driven intrasuperlattice phase transition between the nanoparticulate components.

SUBMITTER: Cheon J 

PROVIDER: S-EPMC1413888 | biostudies-other | 2006 Feb

REPOSITORIES: biostudies-other

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Magnetic superlattices and their nanoscale phase transition effects.

Cheon Jinwoo J   Park Jong-Il JI   Choi Jin-sil JS   Jun Young-wook YW   Kim Sehun S   Kim Min Gyu MG   Kim Young-Min YM   Kim Youn Joong YJ  

Proceedings of the National Academy of Sciences of the United States of America 20060221 9


The systematic assembly of nanoscale constituents into highly ordered superlattices is of significant interest because of the potential of their multifunctionalities and the discovery of new collective properties. However, successful observations of such superlattice-associated nanoscale phenomena are still elusive. Here, we present magnetic superlattices of Co and Fe(3)O(4) nanoparticles with multidimensional symmetry of either AB (NaCl) or AB(2) (AlB(2)). The discovery of significant enhanceme  ...[more]

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