Preparation of nanospherical porous NiO by a hard template route and its supercapacitor application
A nanospherical porous NiO electrode material was successfully prepared by a nanocasting method using porous carbon nanospheres as a hard template. The obtained porous NiO materials were characterized with high crystalline degree, larger surface area than 200m2g-1, 5–6nm mesoporous channels and nano...
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Veröffentlicht in: | Materials letters 2014-11, Vol.135, p.172-175 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A nanospherical porous NiO electrode material was successfully prepared by a nanocasting method using porous carbon nanospheres as a hard template. The obtained porous NiO materials were characterized with high crystalline degree, larger surface area than 200m2g-1, 5–6nm mesoporous channels and nanospherical morphology with 500–700nm in diameter, which render them excellent electrochemical performance. The galvanostatic charge–discharge measurements demonstrated that the optimal electrode possessed a high specific capacitance of 1201Fg−1 at a discharge current density of 0.5Ag−1. In addition, specific capacitances at different discharge current densities indicated a good capacitance at high current density and electrochemical impedance spectra suggested low charge transfer resistance of the electrodes. It also exhibited cycling stability of 70% capacity retention after 500 continuous charge/discharge cycles.
•Nanospherical porous NiO was synthesized by a facile hard template method.•The material possesses high surface area and superior mesoporous structure.•The prepared NiO electrodes exhibit prominent specific capacitance. |
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ISSN: | 0167-577X 1873-4979 |
DOI: | 10.1016/j.matlet.2014.07.150 |