Keywords: silver antimonate, defective pyrochlore-type structure, ion-conducting properties, ceramic properties.
@article{VYURM_2019_11_2_a8,
author = {Yu. A. Lupitskaya and D. A. Kalganov and L. Yu. Kovalenko and F. A. Yaroshenko and Yu. V. Antonova},
title = {Phase formation, structure and ion conductivity of silver antimonate-molibdats},
journal = {Vestnik \^U\v{z}no-Uralʹskogo gosudarstvennogo universiteta. Seri\^a, Matematika, mehanika, fizika},
pages = {65--70},
year = {2019},
volume = {11},
number = {2},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VYURM_2019_11_2_a8/}
}
TY - JOUR AU - Yu. A. Lupitskaya AU - D. A. Kalganov AU - L. Yu. Kovalenko AU - F. A. Yaroshenko AU - Yu. V. Antonova TI - Phase formation, structure and ion conductivity of silver antimonate-molibdats JO - Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika PY - 2019 SP - 65 EP - 70 VL - 11 IS - 2 UR - http://geodesic.mathdoc.fr/item/VYURM_2019_11_2_a8/ LA - ru ID - VYURM_2019_11_2_a8 ER -
%0 Journal Article %A Yu. A. Lupitskaya %A D. A. Kalganov %A L. Yu. Kovalenko %A F. A. Yaroshenko %A Yu. V. Antonova %T Phase formation, structure and ion conductivity of silver antimonate-molibdats %J Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika %D 2019 %P 65-70 %V 11 %N 2 %U http://geodesic.mathdoc.fr/item/VYURM_2019_11_2_a8/ %G ru %F VYURM_2019_11_2_a8
Yu. A. Lupitskaya; D. A. Kalganov; L. Yu. Kovalenko; F. A. Yaroshenko; Yu. V. Antonova. Phase formation, structure and ion conductivity of silver antimonate-molibdats. Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika, Tome 11 (2019) no. 2, pp. 65-70. http://geodesic.mathdoc.fr/item/VYURM_2019_11_2_a8/
[1] Stenina I.A., Yaroslavtsev A.B., “Low- and intermediate-temperature proton-conducting electrolytes”, Inorganic Materials, 53:3 (2017), 253–262 | DOI | DOI
[2] S. Nikodemski, J. Tong, R. O'Hayre, “Solid-state reactive sintering mechanism for proton conducting ceramics”, Solid State Ionics, 253 (2013), 201–210 | DOI
[3] Lupitskaya Y.A., Burmistrov V.A., “Ionic conductivity of potassium antimonate tungstates with partial Na$^+$ or Li$^+$ substitution for K$^+$”, Inorganic Materials, 49:9 (2013), 930–934 | DOI | DOI
[4] Il'ina A.A., Stenina I.A., Lysanova G.V., Yaroslavtsev A.B., Veresov A.G., “Silver magnesium molybdate and silver cobalt molybdate: Synthesis and ionic conductivity”, Russian Journal of Inorganic Chemistry, 51:6 (2006), 890–894 | DOI
[5] Burmistrov V.A., Zakhar'evich D.A., “Ion-conducting defect pyrochlore phases in the K$_2$O-Sb$_2$O$_3$-WO$_2$ system”, Inorganic Materials, 39:1 (2003), 68–71 | DOI
[6] Lupitskaya Yu.A., Burmistrov V.A., Kalganov D.A., “Structure and Ionic Conductivity of Solid Solutions in the System K$_2$CO$_3$-AgNO$_3$-Sb$_2$O$_3$-MeO$_3$ (Me = W, Mo)”, Journal of Surface Investigation X-ray Synchrotron and Neutron Techniques, 9:3 (2015), 624–629 | DOI | DOI
[7] Lupitskaya Y.A., Kalganov D.A., Klyueva M.V., “Formation of Compounds in the Ag$_2$O-Sb$_2$O$_3$-MoO$_3$ System on Heating”, Inorganic Materials, 54:3 (2018), 240–244 | DOI | DOI