With the view of developing new materials for sodium and sodium-ion power sources, NaFeO-SnO (0-50 mol.% SnO) powders were synthesized using a solid state method, and their phase composition and crystal structure were studied. A phase of the NaFeSnO composition with a layered rhombohedral structure of the α-NaFeO type was found when the tin dioxide content was 20 mol.%. The phase produced was of an O3 structural type. O3-type phases have sufficiently good performance when used as cathode materials in sodium-ion batteries and, moreover, often have a rather high sodium-cation conductivity. A two-dimensional migration map was built using Voronoi-Dirichlet partition and TOPOS software package. The sodium-ion conductivity of NaFeSnO at room temperature was rated low (10 S × cm at 20 °C), which may be the result of channels too narrow for Na migration. The results obtained show that the application of the compound studied in this work as a solid electrolyte in sodium power sources is unlikely. It is the potential use of NaFeSnO as the active material of cathodes in Na and Na-ion power sources that presents practical interest.
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http://dx.doi.org/10.3390/ma15103612 | DOI Listing |
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