Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7744579 | Solid State Ionics | 2018 | 8 Pages |
Abstract
The phase equilibria in the NdFeO3 â δ - SrFeO3 â δ - SrCoO3 â δ - NdCoO3 â δ system were studied at 1373 K in air. The homogeneity ranges and crystal structure of Nd1 â xSrxFe1 â yCoyO3 â δ solid solutions were determined by the X-ray powder diffraction, the unit cell parameters were refined by the Rietveld analysis. It was found that Nd1 â xSrxFe1 â yCoyO3 â δ with 0.0 â¤Â x â¤Â 0.6 and 0.1 â¤Â y â¤Â 0.9 possesses orthorhombic structure (sp. gr. Pbnm) that reveals O-type â Oâ²-type â O-type structural transition. The orthorhombic distortion decreases with the increasing of strontium content, as a result Nd1 â xSrxFe1 â yCoyO3 â δ solid solutions with 0.7 â¤Â x â¤Â 0.9 and 0.1 â¤Â y â¤Â 0.9 possess the cubic structure (sp. gr. Pm3m). Isothermal-isobaric phase diagram for the NdFeO3 â δ - SrFeO3 â δ - SrCoO3 â δ - NdCoO3 â δ system at 1373 K in air has been presented. A series of samples with the overall composition Nd0.2Sr0.8Fe1 â yCoyO3 â δ (0.0 â¤Â y â¤Â 1.0) were characterized by the thermogravimetric analysis, iodometric titration, dilatometry and electrical conductivity measurements. The oxygen nonstoichiometry in Nd0.2Sr0.8Fe1 â yCoyO3 â δ (0.0 â¤Â y â¤Â 1.0) increases with increasing temperature and cobalt content. Gradual substitution of iron by cobalt in the Nd0.2Sr0.8Fe1 â yCoyO3 â δ oxides leads to the increase of the average thermal expansion coefficients. The electrical conductivity exhibits maximum within the range of 600-750 K and significantly increased with cobalt content at T < 800 K. Chemical compatibility of Nd0.2Sr0.8Fe1 â yCoyO3 â δ with Ce0.8Sm0.2O2 â δ and La0.88Sr0.12Ga0.82Mg0.12O3 â δ solid electrolytes has been studied. The single cells based on the LSGM electrolyte, Sr2Ni0.75Mg0.25MoO6 anode and Nd0.2Sr0.8Fe1 â yCoyO3 â δ (y = 0.3 and 1.0) cathode were fabricated and examined.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
Sh.I. Elkalashy, A.R. Gilev, T.V. Aksenova, A.S. Urusova, V.A. Cherepanov,