In situ high temperature powder neutron diffraction study of undoped and Ca-doped La28-xW4+xO54+3x/2 (x=0.85)
Artikel i vetenskaplig tidskrift, 2013

In situ neutron diffraction experiments of 2% Ca-doped and nominally undoped lanthanum tungstate (La28-xW4+xO54+3x/2, with x = 0.85) have been carried out under controlled pD(2)O and pO(2) at elevated temperatures. All the diffraction patterns could be refined using an average cubic fluorite-related structure, in accordance with recent reports. The material exhibits disorder of the oxygen and the cation sublattices. Splitting of the oxygen sites around tungsten from the 32f to 96k Wyckoff position in the Fm (3) over barm space group improves the model and can better represent the oxygen disorder. No phase transition was detected from room temperature up to 800 degrees C under any of the studied conditions. Expansion of the unit cell constants in the presence of water at intermediate and low temperatures was correlated with the formation of protonic defects. The thermal expansion coefficient for lanthanum tungstate is rather linear under all studied conditions (similar to 11 x 10(-6) K-1). The in situ diffraction studies are correlated with dilatometry investigations and conductivity measurements.


A. Magraso

Universitetet i Oslo

C. H. Hervoches

Universitetet i Oslo

Istaq Ahmed


ISIS Facility

S. Hull

ISIS Facility

Jonas Nordström

Chalmers, Teknisk fysik, Kondenserade materiens fysik

A. W. B. Skilbred

Universitetet i Oslo

R. Haugsrud

Universitetet i Oslo

Journal of Materials Chemistry A

2050-7488 (ISSN)

Vol. 1 3774-3782