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Facile synthesis of tremella-like MnO2 and its application as supercapacitor electrodes 被引量:2

Facile synthesis of tremella-like MnO2 and its application as supercapacitor electrodes
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摘要 In this work, three kinds of ultrathin tremella-like MnO2 have been simply synthesized by decomposing KMnO4 under mild hydrothermal conditions. When applied as electrode materials, they all exhibited excellent electrochemical performance. The as- prepared MnO2 samples were characterized by means of XRD, SEM, TEM and XPS. Additionally, the relationship of the crystalline nature with the electrochemical performance was investigated. Among the three samples, the product with the poorest crystallinity had the highest capacitance of 220 Fig at a current density of 0.1 A/g. It is thought that the ultrathin MnO2 nanostructures can serve as promising electrode materials for supercapacitors. In this work, three kinds of ultrathin tremella-like MnO2 have been simply synthesized by decomposing KMnO4 under mild hydrothermal conditions. When applied as electrode materials, they all exhibited excellent electrochemical performance. The as- prepared MnO2 samples were characterized by means of XRD, SEM, TEM and XPS. Additionally, the relationship of the crystalline nature with the electrochemical performance was investigated. Among the three samples, the product with the poorest crystallinity had the highest capacitance of 220 Fig at a current density of 0.1 A/g. It is thought that the ultrathin MnO2 nanostructures can serve as promising electrode materials for supercapacitors.
出处 《Frontiers of Materials Science》 SCIE CSCD 2015年第3期234-240,共7页 材料学前沿(英文版)
基金 Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant Nos. 51172119 and 51221291), the graduate student innovation fund project in Jiangxi Province (No. YC2014-S301), and the Jingdezhen Ceramic Institute graduate student innovation fund project.
关键词 manganese dioxide SUPERCAPACITOR electrochemical property hydrotherreal manganese dioxide supercapacitor electrochemical property hydrotherreal
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  • 1Jiang H, Sun T, Li C, et al. Hierarchical porous nanostructures assembled om ultrathin MnO2 nanoflakes with enhanced super- capacitive performances. Journal of Materials Chemistry, 2012, 22 (6): 2751 2756.
  • 2Devaraj S, Munichandraiah N. Effect of crystallographic structure of MnO2 on its electrochemical capacitance properties. Journal of Physical Chemistry C, 2008, 112(11): 44064417.
  • 3Yan Y, Cheng Q, Zhu Z, et al. Controlled synthesis of hierarchical polyaniline nanowires/ordered bimodal mesoporous carbon nano- composites with high surface area for supercapacitor electrodes. Journal of Power Sources, 2013, 240:544-550.
  • 4Jiang H, Ma J, Li C. Mesoporous carbon incorporated metal oxide nanomaterials as supercapacitor electrodes. Advanced Materials, 2012, 24(30): 41974202.
  • 5Yan Y, Cheng Q, Wang G, et al. Growth of polyaniline nanowhiskers on mesoporous carbon for supercapacitor applica- tion. Journal of Power Sources, 2011, 196(18): 7835-7840.
  • 6Zhang Y, Li J, Kang F, et al. Fabrication and electrochemical characterization of two-dimensional ordered nanoporous manga- nese oxide for supercapacitor applications. International Journal of Hydrogen Energy, 2012, 37(1): 860-866.
  • 7Lei Z, Zhang J, Zhao X. Ultrathin MnO2 nanofibers grown on graphitic carbon spheres as high-performance asymmetric super- capacitor electrodes. Journal of Materials Chemistry, 2012, 22(1): 153-160.
  • 8Wei W, Huang X, Tao Y, et al. Enhancement of the electrocapacitive performance of manganese dioxide by introdu- cing a microporous carbon spheres network. Physical Chemistry Chemical Physics, 2012, 14(17): 5966-5972.
  • 9Jiang H, Lee P S, Li C. 3D carbon based nanostructures for advanced supercapacitors. Energy & Environmental Science, 2013, 6(1): 41-53.
  • 10Meher S K, Rao G R. Enhanced activity of microwave synthesized hierarchical lLrlO2 for high performance supercapacitor applica- tions. Journal of Power Sources, 2012, 215:317-328.

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