Thermal behavior, mineral phase, and microstructure characteristics of Na2Mn3O7 synthesized from MnO2 and MnCl2 via a low-cost, simple conventional mixing method

Sodium manganese oxide plays an important role in the cathode application of sodium ion batteries. In this study, sodium manganese oxide Na2Mn3O7 (NMO) with a triclinic structure was successfully synthesized via a low-cost, simple conventional mixing method. NaMnO materials were synthesized by mixin...

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Veröffentlicht in:Journal of the Ceramic Society of Japan 2020/11/01, Vol.128(11), pp.970-976
Hauptverfasser: MARLINA, Hilda Ayu, SEBAYANG, Kerista, GEA, Saharman, NOER, Zikri, SEPTAWENDAR, Rifki, SUNENDAR, Bambang
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Sprache:eng
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Zusammenfassung:Sodium manganese oxide plays an important role in the cathode application of sodium ion batteries. In this study, sodium manganese oxide Na2Mn3O7 (NMO) with a triclinic structure was successfully synthesized via a low-cost, simple conventional mixing method. NaMnO materials were synthesized by mixing Na2CO3 precursors and the two different types of Mn precursors, namely MnO2 by a solid method (the sample C) and MnCl2 by a sol–gel method (the Sample D). The calcination of both samples was carried out at 800 °C for 3 h. The results shown that the thermal behavior and crystal characteristics of the Sample D are slightly better than another one. Nevertheless, the Sample C exhibits a better microstructure, showing rod-like particles more dominant than particular particles. In addition, the Sample C reveals a little bit larger surface area than the Sample D.
ISSN:1882-0743
1348-6535
DOI:10.2109/jcersj2.20123