Transmission Electron Microscopy and Neutron Powder Diffraction Studies of GdFeO3 Type SrNbO3

Stoichiometric SrNbO3; with a GdFeO3 type structure was synthesized between 1300 and 1550°C in Ar-filled and sealed niobium ampoules. Its crystal structure was refined using time-of-flight neutron diffraction data. Space group Pnma: a=√2·ap=5.6894(2) Å; b=2·ap=8.0684(1) Å; c=√2·ap=5.6944(2) Å; RF2=0...

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Veröffentlicht in:Journal of solid state chemistry 1999-11, Vol.147 (2), p.421-428
Hauptverfasser: Hannerz, H., Svensson, G., Istomin, S.Ya, D'yachenko, O.G.
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Sprache:eng
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Zusammenfassung:Stoichiometric SrNbO3; with a GdFeO3 type structure was synthesized between 1300 and 1550°C in Ar-filled and sealed niobium ampoules. Its crystal structure was refined using time-of-flight neutron diffraction data. Space group Pnma: a=√2·ap=5.6894(2) Å; b=2·ap=8.0684(1) Å; c=√2·ap=5.6944(2) Å; RF2=0.020; and RP=0.034. High-resolution electron microscopy and electron diffraction studies frequently revealed structural defects in SrNbO3. X-ray and electron diffraction studies showed cubic symmetry for SrNbO3 synthesized below 1300°C and for compounds with nominal composition Sr0.8NbO3 synthesized between 1200 and 1550°C. SrNbO3 was found to be temperature independently paramagnetic.
ISSN:0022-4596
1095-726X
1095-726X
DOI:10.1006/jssc.1999.8357