Crystal structure and electrical conductivity of Nd5–xSmxMo3O16 solid solutions

Samarium substitution for neodymium in the Nd 5 Mo 3 O 16 compound has been studied by X-ray diffraction, scanning electron microscopy, and IR spectroscopy. The results demonstrate that fluorite-like Nd 5– x Sm x Mo 3 O 16 solid solutions exist in the range x ≤ 2. The electrical conductivity of the...

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Veröffentlicht in:Inorganic materials 2015-10, Vol.51 (10), p.1033-1038
Hauptverfasser: Chebyshev, K. A., Get’man, E. I., Pasechnik, L. V., Ardanova, L. I., Korotina, D. V.
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container_end_page 1038
container_issue 10
container_start_page 1033
container_title Inorganic materials
container_volume 51
creator Chebyshev, K. A.
Get’man, E. I.
Pasechnik, L. V.
Ardanova, L. I.
Korotina, D. V.
description Samarium substitution for neodymium in the Nd 5 Mo 3 O 16 compound has been studied by X-ray diffraction, scanning electron microscopy, and IR spectroscopy. The results demonstrate that fluorite-like Nd 5– x Sm x Mo 3 O 16 solid solutions exist in the range x ≤ 2. The electrical conductivity of the solid solutions increases with increasing samarium content in the range x = 0–1. Structure refinement by the Rietveld method for Nd 4 SmMo 3 O 16 has shown that the Nd(2) coordination polyhedron in this solid solution is distorted more severely than that in the structure of Nd 5 Mo 3 O 16 .
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Industrial Chemistry/Chemical Engineering
Inorganic Chemistry
Materials Science
title Crystal structure and electrical conductivity of Nd5–xSmxMo3O16 solid solutions
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