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Название: Ternary Molybdate Rb5(Ag1/3Hf5/3)(MoO4)6: Synthesis, Structure, Thermal Expansion and Ionic Conductivity
Авторы: Subanakov, A. K.
Tushinova, Yu. L.
Kovtunets, E. V.
Spiridonova, T. S.
Bazarov, B. G.
Дата публикации: 2025
Издатель: Уральский федеральный университет
Ural Federal University
Библиографическое описание: Ternary Molybdate Rb5(Ag1/3Hf5/3)(MoO4)6: Synthesis, Structure, Thermal Expansion and Ionic Conductivity / A. Subanakov, Yu. Tushinova, E. Kovtunets, T. Spiridonova, B. Bazarov // Chimica Techno Acta. — 2025. — Vol. 12, No. 1. — № 12112.
Аннотация: This study aims to characterize the properties of the ternary molybdate Rb5(Ag1/3Hf5/3)(MoO4)6, which was previously identified during phase equilibriumvinvestigations in the Ag2MoO4-Rb2MoO4-Hf(MoO4)2 system. A ternary molybdate Rb5(Ag1/3Hf5/3)(MoO4)6 was obtained through a solid-state reaction. It was found that the compound crystallizes in the trigonal space group R3̅ c and melts at 596 °C with decomposition. Its structure was refined using the Rietveld method. The crystal structure consists of a mixed framework composed of isolated (Ag/Hf)O6 octahedra and MoO4 tetrahedra, interconnected through shared oxygen vertices. Large voids within the framework accommodate two types of rubidium atoms. Using the powder XRD data recorded over 30-400 °C, the principal components of the thermal expansion tensor were determined. Rb5(Ag1/3Hf5/3)(MoO4)6 can be classified as a material with high thermal expansion coefficient (αV = 36.7∙10-6 °C-1 at 400 °C). At elevated temperatures, the compound exhibited significant ionic conductivity, reaching 1.7∙10-3 S/cm at 480 °C with an activation energy Ea = 0.8 eV with oxygen ions as the probable charge carriers. Energy barriers for one-, two-, and three-dimensional transport in the compound were theoretically evaluated using the softBV program and bond valence sum maps (BVS).
Ключевые слова: TERNARY MOLYBDATE
SOLID STATE SYNTHESIS
CRYSTAL STRUCTURE
THERMAL EXPANSION
CONDUCTIVITY
URI: http://elar.urfu.ru/handle/10995/142582
Идентификатор РИНЦ: https://elibrary.ru/item.asp?id=80598288
ISSN: 2411-1414
DOI: 10.15826/chimtech.2025.12.1.12
Сведения о поддержке: This research was carried out within the framework of the budget project of Baikal Institute of Nature Management SB RAS No 0273-2021-0008.
Источники: Chimica Techno Acta. 2025. Vol. 12. № 1
Располагается в коллекциях:Chimica Techno Acta

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