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Hybrid Reduced Graphene Oxide/Manganese Diselenide Cubes: A New Electrode Material for Supercapacitors

Author(s)
Balamuralitharan, B.Karthick, S.N.Balasingam, Suresh KannanHemalatha, K.V.Selvam, SamayananRaj, J. AnandhaPrabakar, KandasamyJun, YongseokKim, Hee-Je
Issued Date
2017-11
DOI
10.1002/ente.201700097
URI
https://scholarworks.unist.ac.kr/handle/201301/23028
Fulltext
http://onlinelibrary.wiley.com/doi/10.1002/ente.201700097/abstract
Citation
ENERGY TECHNOLOGY, v.5, no.11, pp.1953 - 1962
Abstract
The integration of 2D graphene nanosheets and layered transition-metal dichalcogenides has been recognized as one of the most extensive strategies for the synthesis of promising electrode materials for energy-storage devices. In this study, cubic manganese diselenide (MnSe2) and hybrid reduced graphene oxide/MnSe2 (G-MnSe2) materials were synthesized by a facile hydrothermal method. Metallic selenium impurities are considered to be a major unwanted byproduct in this method. An effective means to remove such bulk chalcogenides is a key challenge. For the synthesis of the G-MnSe2 hybrid material, we used a strategy in which the graphene oxide was mixed with manganese and selenium precursors. Surprisingly, the final G-MnSe2 product contained a negligible amount of selenium impurity. The MnSe2 and G-MnSe2 hybrid materials were characterized in detail. For the first time, the electrochemical energy-storage behavior of MnSe2-based materials was assessed for supercapacitor applications. The specific capacitance of the MnSe2 electrode was approximately 57.8mFcm-2, whereas the hybrid G-MnSe2 electrode showed a much higher specific capacitance of 93.3mFcm-2 at a scan rate of 1mVs-1. A symmetric cell made from the G-MnSe2 hybrid material showed excellent long-term stability for 4500 cycles and approximately 106% retention of its initial capacitance, which is impressive compared with the cycle life of the MnSe2-based symmetric cell (80% capacitance retention at the 4500th cycle).
Publisher
WILEY-V C H VERLAG GMBH
ISSN
2194-4288
Keyword (Author)
ElectrodesGrapheneHydrothermal synthesisManganeseSelenium
Keyword
CARBON MATERIALSHYDROTHERMAL SYNTHESISCOMPOSITE ELECTRODESMAGNETIC-PROPERTIESOXIDENANOSHEETSDEPOSITIONCAPACITORSCELLION

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