Y{sub 2}MoSe{sub 3}O{sub 12} and Y{sub 2}MoTe{sub 3}O{sub 12}: Solid-state synthesis, structure determination, and characterization of two new quaternary mixed metal oxides containing asymmetric coordination environment
Journal Article
·
· Journal of Solid State Chemistry
Two new quaternary yttrium molybdenum selenium/tellurium oxides, Y{sub 2}MoSe{sub 3}O{sub 12} and Y{sub 2}MoTe{sub 3}O{sub 12} have been prepared by standard solid-state reactions using Y{sub 2}O{sub 3}, MoO{sub 3}, and SeO{sub 2} (or TeO{sub 2}) as reagents. Single-crystal X-ray diffraction was used to determine the crystal structures of the reported materials. Although both of the materials contain second-order Jahn–Teller (SOJT) distortive cations and are stoichiometrically similar, they reveal different structural features: while Y{sub 2}MoSe{sub 3}O{sub 12} shows a three-dimensional framework consisting of YO{sub 8}, MoO{sub 6}, and SeO{sub 3} groups, Y{sub 2}MoTe{sub 3}O{sub 12} exhibits a layered structure composed of YO{sub 8}, MoO{sub 4}, TeO{sub 3}, and TeO{sub 4} polyhedra. With the Mo{sup 6+} cations in Y{sub 2}MoSe{sub 3}O{sub 12}, a C{sub 3}-type intraoctahedral distortion toward a face is observed, in which the direction of the out-of-center distortion for Mo{sup 6+} is away from the oxide ligand linked to a Se{sup 4+} cation. The Se{sup 4+} and Te{sup 4+} cations in both materials are in asymmetric coordination environment attributed to the lone pairs. Elemental analyses, infrared spectroscopy, thermal analyses, intraoctahedral distortions, and dipole moment calculations for the compounds are also presented. - Graphical abstract: Y{sub 2}MoSe{sub 3}O{sub 12} reveals a three-dimensional framework consisting of YO{sub 8}, MoO{sub 6}, and SeO{sub 3} polyhedra, whereas Y{sub 2}MoTe{sub 3}O{sub 12} exhibits a layered structure composed of YO{sub 8}, MoO{sub 4}, TeO{sub 3}, and TeO{sub 4} groups. - Highlights: • Two new selenite and tellurite (Y{sub 2}MoQ{sub 3}O{sub 12}; Q=Se and Te) are synthesized. • Y{sub 2}MoQ{sub 3}O{sub 12} contain second-order Jahn–Teller distortive cations in asymmetric environments. • The intra-octahedral distortion of the Mo{sup 6+} is influenced by the Se{sup 4+}.
- OSTI ID:
- 22309067
- Journal Information:
- Journal of Solid State Chemistry, Journal Name: Journal of Solid State Chemistry Vol. 208; ISSN 0022-4596; ISSN JSSCBI
- Country of Publication:
- United States
- Language:
- English
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Negative thermal expansion correlated with polyhedral movements and distortions in orthorhombic Y{sub 2}Mo{sub 3}O{sub 12}
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Structure and properties of Y/sub 5/Mo/sub 2/O/sub 12/ and Gd/sub 5/Mo/sub 2/O/sub 12/: mixed valence oxides with structurally equivalent molybdenum atoms
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Mon Jul 15 00:00:00 EDT 2013
· Materials Research Bulletin
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OSTI ID:22290484
Sr{sub 3}Bi{sub 2}(SeO{sub 3}){sub 6}·H{sub 2}O: A novel anionic layer consisting of second-order Jahn–Teller (SOJT) distortive cations
Journal Article
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Wed Jan 14 23:00:00 EST 2015
· Journal of Solid State Chemistry
·
OSTI ID:22443480
Structure and properties of Y/sub 5/Mo/sub 2/O/sub 12/ and Gd/sub 5/Mo/sub 2/O/sub 12/: mixed valence oxides with structurally equivalent molybdenum atoms
Journal Article
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Sat Nov 30 23:00:00 EST 1985
· J. Solid State Chem.; (United States)
·
OSTI ID:5985943
Related Subjects
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
ABSORPTION SPECTROSCOPY
CATIONS
CRYSTAL STRUCTURE
DIPOLE MOMENTS
INFRARED SPECTRA
JAHN-TELLER EFFECT
LIGANDS
MOLYBDATES
MOLYBDENUM IONS
MOLYBDENUM OXIDES
MONOCRYSTALS
SELENITES
SELENIUM IONS
SELENIUM OXIDES
SOLIDS
SYNTHESIS
TELLURIUM OXIDES
THERMAL ANALYSIS
X-RAY DIFFRACTION
YTTRIUM
ABSORPTION SPECTROSCOPY
CATIONS
CRYSTAL STRUCTURE
DIPOLE MOMENTS
INFRARED SPECTRA
JAHN-TELLER EFFECT
LIGANDS
MOLYBDATES
MOLYBDENUM IONS
MOLYBDENUM OXIDES
MONOCRYSTALS
SELENITES
SELENIUM IONS
SELENIUM OXIDES
SOLIDS
SYNTHESIS
TELLURIUM OXIDES
THERMAL ANALYSIS
X-RAY DIFFRACTION
YTTRIUM