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    Capacitance of MnO2 Micro-Flowers Decorated CNFs in Alkaline Electrolyte and Its Bi-Functional Electrocatalytic Activity toward Hydrazine Oxidation

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    Open Access Version of Record under the Creative Commons Attribution License (685.4Kb)
    Date
    2017-02-12
    Author
    Ji, Seong-Min
    Ghouri, Zafar Khan
    Elsaid, Khaled
    Ko, Yo Han
    Al-Meer, Saeed
    Ahmad, M.I.
    Son, Dong Ick
    Kim, Hak Yong
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    Abstract
    Well-dispersed MnO2 micro-flowers were grown directly on carbon nanofibers via a simple hydrothermal technique without any template. Structure and morphology were characterized by X-ray diffraction (XRD) and field-emission scanning electron microscopy (FESEM) equipped with rapid energy dispersive analysis X-ray (EDX). The appealed characterization techniques specified that the obtained material is carbon nanofibers decorated by MnO2 micro-flowers. Super capacitive performance of the MnO2 micro-flowers decorated CNFs as active electrode material was evaluated by cyclic voltammetry (CV) in alkaline medium and yield a reasonable specific capacitance of 120 Fg−1 at 5 mV s−1. As an electrocatalyst for hydrazine oxidation, the MnO2 micro-flowers decorated CNFs showed high current density. The impressive bi-functional electrochemical activity of MnO2 micro-flowers decorated CNFs is mainly attributed to its unique architectural structure.
    DOI/handle
    http://dx.doi.org/10.20964/2017.03.73
    http://hdl.handle.net/10576/5491
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