Crystal structure and conductivity of bismuth-containing complex oxides
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Emel’yanova YuV, Shafigina RR, Buyanova ES, Zhukovskii VM, Zainullina VM, Petrova SA. Oxide Ion Conductors of the BIMEVOX Family: Synthesis, Structure, and Conductivity. Russ J Phys Chem. 2006;80(11):1725–30. doi:10.1134/S0036024406110057
Zhukovskii VM, Emel’yanova YuV, Shafigina RR, Petrova SA, Zainullina VM, Buyanova ES. Oxide Ceramics BIMEVOX: Conductivity, Structure, and Chemical Bond. Russ J Electrochem. 2007;43(4):443–7. doi:10.1134/S1023193507040118
Zhukovskii VM, Buyanova ES, Emel’yanova YuV, Morozova MV, Shafigina RR, Zakharov RG, Zhuravlev VD. Synthesis, Structure, and Conductivity of BIMEVOX Oxide Ceramics. Russ J Electrochem. 2009;45(5):512–9. doi:10.1134/S1023193509050024
Buyanova ES, Petrova SA, Emel’yanova YuV, Blinova AL, Morozova MV, Zhukovskii VM, Zhuravlev VD. Preparation, Structure, and Charge Transport Characteristics of BIFEVOX Ultrafine Powders. Russ J Inorg Chem. 2009;54(8):1193–204. doi:10.1134/S0036023609080051
Buyanova ES, Petrova SA, Emel’yanova YuV, Borodina NA, Zakharov RG, Zhukovskii VM. Crystal Structure and Conduction of BICUTIVOX. Russ J Inorg Chem. 2009;54(6):864–72. doi:10.1134/S0036023609060084
Morozova MV, Buyanova ES, Petrova SA, Khisametdinova VV, Emel’yanova YuV, Shatokhina AN, Zhukovskii VM. Structural and Thermal Stability of BIMEVOX Oxygen Semiconductors. Russ J Electrochem. 2011;47(4):448–52. doi:10.1134/S1023193511040100
Morozova MV, Buyanova ES, Emelyanova YuV, Zhukovskiy VM, Petrova SA. High conducting oxide ceramics BIMEVOX: synthesis, structure, properties. Solid State Ionics. 2011;192:153–7. doi:10.1016/j.ssi.2010.04.020
Morozova MV, Buyanova ES, Emelyanova JuV, Zhukovskiy VM, Petrova SA, Zakharov RG, Tarakina NV. Specific features in the synthesis, crystal structure and electrical conductivity of BICUTIVOX. Solid State Ionics. 2011;201:27–34. doi:10.1016/j.ssi.2011.07.010
Buyanova ES, Shafigina RR, Morozova MV, Emel’yanova YuV, Khisametdinova VV, Zhukovskii VM, Petrova SA, Tarakina NV. Electrochemical Characteristics, Thermal and Chemical Compatibility in the La0.7Sr0.3CoO3 Electrode-BIFEVOX Electrolyte System. Russ J Inorg Chem. 2013;58(5):554–8. doi:10.1134/S0036023613050033
Kaymieva OS, Tarasova OA, Shatokhina AN, Buyanova ES, Morozova MV, Zhukovskii VM. Structural and Transport Characteristics of Substituted Bismuth Niobates. Russ J Electrochem. 2013;49(7):652–7. doi:10.1134/S1023193513070057
Mikhailovskaya ZA, Buyanova ES, Petrova SA, Zhukovskiy VM. Oxygen–Ionic Conductors Based on Substituted Bismuth Molybdates with Column-Type Structural Fragments. Russ J Electrochem. 2013;49(7):658–64. doi:10.1134/S1023193513070112
Buyanova ES, Morozova MV, Emelyanova YuV, Petrova SA, Zakharov RG, Tarakina NV, Zhukovskiy VM. Structure, thermal stability and electrical conductivity of BINBVOX. Solid State Ionics. 2013;243:8–17. doi:10.1016/j.ssi.2013.04.009
Mikhailovskaya ZA, Buyanova ES, Petrova SA, Morozova MV, Zhukovskiy VM, Zakharov RG, Tarakina NV, Berger IF. Cobalt-doped Bi26Mo10O69: crystal structure and conductivity. J Solid State Chem. 2013;204:9–15. doi:10.1016/j.jssc.2013.05.006
Buyanova ES, Petrova SA, Mikhailovskaya ZA, Kaymieva OS, Shatokhina AN, Emelyanova YuV, Morozova MV. Synthesis, Structure, and Conductivity of Substituted Bismuth Niobate Bi7Nb2O15.5. Russ J Inorg Chem. 2015;60(8):913–20. doi:10.1134/S0036023615080045
Mikhaylovskaya ZA, Buyanova ES, Morozova MV, Petrova SA, Zakharov RG, Nikolaenko IV, Abrahams I. Bi13-xMexMo5O34±d (Me = Mg, Ca, Sr, Ba) solid solutions: synthesis and properties. Ionics. 2015;21(8):2259–68. doi:10.1007/s11581-015-1421-3
DOI: https://doi.org/10.15826/chimtech.2015.2.4.029
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