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Stabilization of over-stoichiometric Mn in layered Na2/3MnO2
Authors:R Stoyanova  D Carlier  M Yoncheva  D Nihtianova  C Delmas
Institution:a Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria
b ICMCB-CNRS, Université de Bordeaux, IPB-ENSCBP, 87 av. du Dr. A. Schweitzer, 33608 Pessac cedex, France
c Central Laboratory of Solar Energy and New Energy Sources, Bulgarian Academy of Sciences, Sofia, Bulgaria
d Central Laboratory of Mineralogy and Crystallography, Bulgarian Academy of Sciences, Acad. G. Bonchev Str. bl. 107, 1113 Sofia, Bulgaria
Abstract:Sodium manganates with nominal composition Na2/3MnO2 were prepared by solid state reaction between Na2CO3 and MnCO3 at 1000 °C. The composition and structure of NaxMnO2 were controlled by the rate of cooling from the temperature of preparation. This is a consequence of the capability of Na2/3MnO2 to accommodate overstoichiometric Mn4+ ions up to 12.5%. Structural characterization was carried out by XRD powder diffractions, TEM analysis and Raman spectroscopy. The composition and oxidation state of manganese were determined by chemical analysis and magnetic susceptibility measurements. The manganese distribution in the layers was analysed using electron paramagnetic resonance (EPR) spectroscopy. By quenching from 1000 °C, the orthorhombic distorted modification is stabilized. A phase separation into orthorhombic and hexagonal modifications takes place when Na2/3MnO2 is slow cooled. The structure changes are concomitant with an increase in the oxidation state of Mn. The overstoichiometric Mn4+ ions are accommodated in the hexagonal modification by creation of vacancies in the MnO2layers.
Keywords:Layered oxides  Sodium manganates  Electron paramagnetic resonance spectroscopy  Raman spectroscopy
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