Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3

The Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems were studied in the subsolidus region using X-ray powder diffraction and differential scanning calorimetric (DSC) analysis. Quasi-binary joins were revealed, and triangulation was carried out. New ternary molybdates: Tl5RZr(MoO4)6 (5:1:2) and TlRZ...

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Main Authors: V. G. Grossman, B. G. Bazarov, Zh. G. Bazarova
Format: Article
Language:English
Published: Uralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. Elʹcina 2017-12-01
Series:Chimica Techno Acta
Subjects:
Online Access:https://journals.urfu.ru/index.php/chimtech/article/view/2649
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author V. G. Grossman
B. G. Bazarov
Zh. G. Bazarova
author_facet V. G. Grossman
B. G. Bazarov
Zh. G. Bazarova
author_sort V. G. Grossman
collection DOAJ
description The Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems were studied in the subsolidus region using X-ray powder diffraction and differential scanning calorimetric (DSC) analysis. Quasi-binary joins were revealed, and triangulation was carried out. New ternary molybdates: Tl5RZr(MoO4)6 (5:1:2) and TlRZr0.5(MoO4)3 (1:1:1) (R = Al, Cr) were prepared. The unit cell parameters for the new compounds were calculated.
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spelling doaj.art-27684a75343047438e5e29fcbd95ff3f2022-12-21T17:22:28ZengUralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. ElʹcinaChimica Techno Acta2409-56132411-14142017-12-014421822310.15826/chimtech/2017.4.4.022354Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3V. G. Grossman0B. G. Bazarov1Zh. G. Bazarova2Baikal Institute of Nature Management SB RAS, Ulan-UdeBaikal Institute of Nature Management SB RAS, Buryat State University, Ulan-UdeBaikal Institute of Nature Management SB RAS, Buryat State University, Ulan-UdeThe Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems were studied in the subsolidus region using X-ray powder diffraction and differential scanning calorimetric (DSC) analysis. Quasi-binary joins were revealed, and triangulation was carried out. New ternary molybdates: Tl5RZr(MoO4)6 (5:1:2) and TlRZr0.5(MoO4)3 (1:1:1) (R = Al, Cr) were prepared. The unit cell parameters for the new compounds were calculated.https://journals.urfu.ru/index.php/chimtech/article/view/2649phase equilibriasynthesisoxide systemsthalliumzirconiumironaluminumcrystal structurespace group
spellingShingle V. G. Grossman
B. G. Bazarov
Zh. G. Bazarova
Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3
Chimica Techno Acta
phase equilibria
synthesis
oxide systems
thallium
zirconium
iron
aluminum
crystal structure
space group
title Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3
title_full Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3
title_fullStr Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3
title_full_unstemmed Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3
title_short Phase equilibria in the Tl2MoO4–R2(MoO4)3–Zr(MoO4)2 (R = Al, Cr) systems: synthesis, structure and properties of new triple molybdates Tl5RZr(MoO4)6 and TlRZr0.5(MoO4)3
title_sort phase equilibria in the tl2moo4 r2 moo4 3 zr moo4 2 r al cr systems synthesis structure and properties of new triple molybdates tl5rzr moo4 6 and tlrzr0 5 moo4 3
topic phase equilibria
synthesis
oxide systems
thallium
zirconium
iron
aluminum
crystal structure
space group
url https://journals.urfu.ru/index.php/chimtech/article/view/2649
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