Synthesis, structure and properties of layered Pr2MoO6‐based oxymolybdates doped with Mg

Undoped and Mg‐doped Pr2MoO6 oxymolybdate polycrystals and single crystals have been prepared by solid‐state reactions and flux growth. The compounds have been characterized by powder X‐ray diffraction, energy‐dispersive spectroscopy, inductively coupled plasma mass spectrometry, scanning transmissi...

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Veröffentlicht in:Acta crystallographica Section B, Structural science, crystal engineering and materials Structural science, crystal engineering and materials, 2020-06, Vol.76 (3), p.492-501
Hauptverfasser: Voronkova, Valentina I., Antipin, Alexander M., Sorokin, Timofei A., Novikova, Nataliya E., Kharitonova, Elena P., Orlova, Ekaterina I., Kvartalov, Vladimir B., Presniakov, Mikhail Yu, Bondarenko, Vladimir I., Vasiliev, Alexander L., Sorokina, Nataliya I.
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Sprache:eng
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Zusammenfassung:Undoped and Mg‐doped Pr2MoO6 oxymolybdate polycrystals and single crystals have been prepared by solid‐state reactions and flux growth. The compounds have been characterized by powder X‐ray diffraction, energy‐dispersive spectroscopy, inductively coupled plasma mass spectrometry, scanning transmission electron microscopy, single crystal X‐ray structure analysis, differential scanning calorimetry and thermogravimetry. The (MgO)x(Pr2O3)y(MoO3)z (x + y + z = 1) solid solution series has been shown to extend to x = 0.03. The structure of the Mg‐doped Pr2MoO6 single crystals can be represented as superimposed lattices of the main matrix (Pr2MoO6) and lattices in which Mo atoms are partially replaced by Mg. The incorporation of Mg atoms into the structure of Pr2MoO6 results in the disordering of the praseodymium and oxygen lattices. Both the polycrystalline and single‐crystal Mg‐doped samples are hygroscopic. Undoped and Mg‐doped Pr2MoO6 oxymolybdate polycrystals and single crystals have been prepared by solid‐state reactions and flux growth. The incorporation of Mg atoms into the structure of Pr2MoO6 results in the partial substitution of Mg atoms for Mo atoms and disordering of the praseodymium and oxygen lattices.
ISSN:2052-5206
2052-5192
2052-5206
DOI:10.1107/S2052520620005740