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Structure and Conductivity of Lithium-Doped Fluorite-Like Molybdates Nd5Mo3O16

  • E. I. Orlova,
  • M. P. Trukhacheva,
  • T. A. Sorokin,
  • V. B. Kvartalov,
  • A. M. Antipin,
  • N. V. Lyskov,
  • E. P. Kharitonova,
  • N. E. Novikova,
  • N. I. Sorokina,
  • O. A. Alekseeva,
  • V. I. Voronkova

摘要

Abstract

Rare-earth molybdenum-containing oxides of the nominal composition LixNd \(_{{5-x}}\) Mo3O \(_{{16\, \pm \,\delta }}\) (x = 0, 0.05, 0.15, 0.25) with a fluorite-related structure have been obtained for the first time as single crystals grown from flux and by solid-phase synthesis in air in the form of polycrystalline samples. The new phases are characterized using X-ray diffraction analysis, simultaneous thermal analysis, and impedance spectroscopy. X-ray diffraction analysis showed that lithium atoms are localized near the positions of rare-earth cations. The chemical formula of the investigated single crystal is Li0.216Nd4.784Mo3O \(_{{14.1 + \delta }}\) . The low lithium content did not affect significantly the ability of the studied phases to dissociative absorption of water but led to a decrease in the total conductivity of LixNd \(_{{5-x}}\) Mo3O \(_{{16\, \pm \,\delta }}\) lithium ceramics.