Synthesis and Characterization of CoO, Co3O4, and Mixed Co/CoO Nanoparticules

Very small nanometric oxide particles (CoO and Co3O4, around 2 nm in diameter) well dispersed inside a polymer matrix were prepared by solid-state oxidation of a metallic colloid precursor (1.6 nm Co particles). WAXS (wide-angle X-ray scattering) and HREM (high-resolution electronic microscopy) were...

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Veröffentlicht in:Chemistry of materials 1999-10, Vol.11 (10), p.2702-2708
Hauptverfasser: Verelst, Marc, Ely, Teyeb Ould, Amiens, Catherine, Snoeck, Etienne, Lecante, Pierre, Mosset, Alain, Respaud, Marc, Broto, Jean Marc, Chaudret, Bruno
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Sprache:eng
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Zusammenfassung:Very small nanometric oxide particles (CoO and Co3O4, around 2 nm in diameter) well dispersed inside a polymer matrix were prepared by solid-state oxidation of a metallic colloid precursor (1.6 nm Co particles). WAXS (wide-angle X-ray scattering) and HREM (high-resolution electronic microscopy) were used to observe very precisely the structural changes occurring during the oxidation process. With cobalt particles a few nanometers large, air oxidation at room temperature results in a surface passivation. Consequently the particles show a composite structure with a metallic core surrounded by an oxide surface layer. Preliminary magnetic measurements reveal that unidirectional exchange anisotropy between the metallic ferromagnetic core and the antiferromagnetic oxide layer occurs below 130 K.
ISSN:0897-4756
1520-5002
DOI:10.1021/cm991003h