High-Energy MnO 2 Nanowire/Graphene and Graphene Asymmetric Electrochemical Capacitors
Chinese Academy of Sciences · University of Queensland
Abstract
In order to achieve high energy and power densities, we developed a high-voltage asymmetric electrochemical capacitor (EC) based on graphene as negative electrode and a MnO(2) nanowire/graphene composite (MGC) as positive electrode in a neutral aqueous Na(2)SO(4) solution as electrolyte. MGC was prepared by solution-phase assembly of graphene sheets and α-MnO(2) nanowires. Such aqueous electrolyte-based asymmetric ECs can be cycled reversibly in the high-voltage region of 0-2.0 V and exhibit a superior energy density of 30.4 Wh kg(-1), which is much higher than those of symmetric ECs based on graphene//graphene (2.8 Wh kg(-1)) and MGC//MGC (5.2 Wh kg(-1)). Moreover, they present a high power density (5000 W…
Citation impact
- FWCI
- 36.87
- Percentile
- 100%
- References
- 59
Authors
6Topics & keywords
- Graphene
- Materials science
- Nanowire
- Electrolyte
- Capacitor
- Electrode
- Electrochemistry
- Supercapacitor
- Affordable and clean energy