BIFEVOX Composites: Manufacture and Characterization
Design of composites is a way to improve the quality of solid electrolytes. By mechanically mixing and annealing substituted bismuth vanadate with nanosized aluminum, bismuth, and zirconium binary oxides, we obtained heterogeneous materials Bi 4 V 1.7 Fe 0.3 O 11 – δ / x Al 2 O 3 , Bi 4 V 1.7 Fe 0.3...
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Veröffentlicht in: | Russian journal of inorganic chemistry 2018-10, Vol.63 (10), p.1297-1302 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
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Zusammenfassung: | Design of composites is a way to improve the quality of solid electrolytes. By mechanically mixing and annealing substituted bismuth vanadate with nanosized aluminum, bismuth, and zirconium binary oxides, we obtained heterogeneous materials Bi
4
V
1.7
Fe
0.3
O
11 – δ
/
x
Al
2
O
3
, Bi
4
V
1.7
Fe
0.3
O
11 – δ
/
x
Bi
2
O
3
, and Bi
4
V
1.7
Fe
0.3
O
11 – δ
/
x
YSZ. The investigation tools were X-ray powder diffraction and electron microscopy with energy-dispersive microanalysis. The composition of materials was studied, the non-interaction of components was elucidated in the aluminum oxide and zirconium oxide composite series, and a nonuniform distribution of nanopowder particles across the surfaces and cleaves of sinters was discovered. The bismuth atoms from bismuth oxide were shown to be capable of incorporating into the Bi
4
Fe
0.3
V
1.7
O
11 – δ
structure. The charge transport characteristics of the materials were studied by impedance spectroscopy. No changes were observed in logσ–10
3
/
T
trends in composites with various binary oxides and various oxide contents. An increase in binary oxide concentration was shown to give rise to an insignificant decay in electrical conductivity. |
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ISSN: | 0036-0236 1531-8613 |
DOI: | 10.1134/S0036023618100042 |