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A hierarchical nanostructure consisting of amorphous MnO2, Mn3O4 nanocrystallites, and single-crystalline MnOOH nanowires for supercapacitors
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A hierarchical nanostructure consisting of amorphous MnO2, Mn3O4 nanocrystallites, and single-crystalline MnOOH nanowires for supercapacitors

Chi-Chang Hu, Ching-Yun Hung, Kuo-Hsin Chang and Yi-Lin Yang
Journal of Power Sources, Vol.196(2), pp.847-850
15/01/2011

Abstract

Cycle stability Manganese oxides Supercapacitor Ternary nanocomposite
In this communication, a porous hierarchical nanostructure consisting of amorphous MnO 2 (a-MnO 2 ), Mn 3 O 4 nanocrystals, and single-crystalline MnOOH nanowires is designed for the supercapacitor application, which is prepared by a simple two-step electrochemical deposition process. Because of the gradual co-transformation of Mn 3 O 4 nanocrystals and a-MnO 2 nanorods into an amorphous manganese oxide, the cycle stability of a-MnO 2 is obviously enhanced by adding Mn 3 O 4 . This unique ternary oxide nanocomposite with 100-cycle CV activation exhibits excellent capacitive performances, i.e., excellent reversibility, high specific capacitances (470 F g -1 in CaCl 2 ), high power property, and outstanding cycle stability. The highly porous microstructures of this composite before and after the 10,000-cycle CV test are examined by means of scanning electron microscopy (SEM) and transmission electron microscopy (TEM). © 2010 Elsevier B.V.

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