Preparation of nanosized LaCoO3 perovskite oxide using amorphous heteronuclear complex as a precursor at low temperature

Nanosized LaCoO3 cobaltite oxide powder with perovskite structure was successfully synthesized at a relatively low calcination temperature using an amorphous heteronuclear complex, LaCo(DTPA)·6H2O, as a precursor. The precursor decomposed completely into cobaltite oxide above 400 °C according to the...

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Veröffentlicht in:Journal of materials science 2000-11, Vol.35 (21), p.5415-5420
Hauptverfasser: Zhu, Yongfa, Tan, Ruiqin, Tao, Yi, Ji, Shishan, Ye, Xiaoyan, Cao, Lili
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Sprache:eng
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Zusammenfassung:Nanosized LaCoO3 cobaltite oxide powder with perovskite structure was successfully synthesized at a relatively low calcination temperature using an amorphous heteronuclear complex, LaCo(DTPA)·6H2O, as a precursor. The precursor decomposed completely into cobaltite oxide above 400 °C according to the DTA and TGA results. XPS revealed that the decomposed species was composed of LaCoO3 cobaltite oxide after the precursor was calcined at 500 °C for 2 hours. XRD demonstrated that nanosized LaCoO3 crystalline powder with perovskite structure was formed after the calcination temperature increased to 600 °C. The grain size and the crystal size of LaCoO3 increased with the calcination temperature from 500 °C to 800 °C, and the heat-treatment time has a less obvious effect on the grain size and the crystal size. It is a useful way to synthesize nanosized perovskite oxides using an amorphous complex as a precursor. This method can be easily quantitatively controlled.
ISSN:0022-2461
1573-4803
DOI:10.1023/A:1004863332704