Specific features of phase equilibriums in Ln–Ba–Fe–O systems

Formation of five-layered Ln 2–ε Ba 3+ε Fe 5 O 15–δ phases [exhibiting nanoscale ordering with layer-by-layer location of the cations in the Ln–Ba–(Ln,Ba)–(Ln,Ba)–Ba–Ln perovskite-type structure] has occurred in the Ln–Ba–Fe–O (Ln = Y, Pr, Nd, Sm, Eu, and Gd) systems at 1100°С in air. Partial substi...

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Veröffentlicht in:Russian journal of general chemistry 2016-08, Vol.86 (8), p.1800-1804
Hauptverfasser: Volkova, N. E., Urusova, A. S., Gavrilova, L. Ya, Bryuzgina, A. V., Deryabina, K. M., Mychinko, M. Yu, Lebedev, O. I., Raveau, B., Cherepanov, V. A.
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Sprache:eng
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Zusammenfassung:Formation of five-layered Ln 2–ε Ba 3+ε Fe 5 O 15–δ phases [exhibiting nanoscale ordering with layer-by-layer location of the cations in the Ln–Ba–(Ln,Ba)–(Ln,Ba)–Ba–Ln perovskite-type structure] has occurred in the Ln–Ba–Fe–O (Ln = Y, Pr, Nd, Sm, Eu, and Gd) systems at 1100°С in air. Partial substitution of iron with cobalt (Ln 2–ε Ba 3+ε Fe 5– y Co y O 15–δ , Ln = Nd, Sm, Eu) has stabilized formation of the ordered structure. The oxygen content in the complex oxides has been determined in air over a wide temperature range by means of high-temperature thermogravimetry and iodometric titration. The change in oxygen content with temperature for the phases with five-layered ordering was significantly smaller than for the disordered phases.
ISSN:1070-3632
1608-3350
DOI:10.1134/S1070363216080041