Electrochemical energy storage in a β-Na0.33V2O5 nanobelt network and its application for supercapacitors
- 17 August 2010
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Journal of Materials Chemistry
- Vol. 20 (38), 8368-8374
- https://doi.org/10.1039/c0jm00652a
Abstract
We report a nanostructured oxide pseudocapacitor electrode utilizing a sodium-doped vanadium oxide (β-Na0.33V2O5) nanobelt network with a three dimensional framework crystal structure, which has been successfully synthesized under mild hydrothermal conditions and heat treatment. Cyclic voltammetry, galvanostatic charge-discharge and cycling tests have been carried out on the nanobelt network in 1 M LiClO4/propylene carbonate (PC) electrolyte for a 1 V potential window. A high specific capacitance of 320 F g−1 at 5 mV s−1 scan rate has been achieved with two sets of redox peaks being identified, corresponding to the half occupancy at M3 and M2 intercalation sites along the tunnel in the β-Na0.33V2O5 crystal lattice. The β-Na0.33V2O5 nanobelt electrode is able to deliver a high energy density of 47 W h kg−1 at a high power density of 5 kW kg−1. Slight degradation in energy density at high power density has been observed. This can be attributed to the charge storage in the nanobelt network which is dominated by the fast surface dependent reaction. Superior cycling stability, with only 34% degradation in specific capacitance, is observed in the β-Na0.33V2O5 nanobelts after 4000 cycles. The results clearly indicate the promising potential of these doped vanadium oxide electrodes for electrochemical energy storage devices.Keywords
This publication has 26 references indexed in Scilit:
- V2O5·0.6H2O nanoribbons as cathode material for asymmetric supercapacitor in K2SO4 solutionElectrochemistry Communications, 2009
- Facile synthesis of NaV6O15 nanorods and its electrochemical behavior as cathode material in rechargeable lithium batteriesJournal of Materials Chemistry, 2009
- High capacity and contrast of electrochromic tungsten-doped vanadium oxide filmsSolid State Ionics, 2008
- Anodic deposition of porous vanadium oxide network with high power characteristics for pseudocapacitorsJournal of Power Sources, 2008
- Vanadium Oxide Nanorods for Li-Ion Battery ApplicationsJournal of the Electrochemical Society, 2008
- Redox Behavior of Vanadium Oxide Nanotubes As Studied by X-ray Photoelectron Spectroscopy and Soft X-ray Absorption SpectroscopyChemistry of Materials, 2003
- Doped Vanadium Oxides as Host Materials for Lithium IntercalationJournal of the Electrochemical Society, 1999
- Vanadium oxide xerogels as electrodes for lithium batteriesElectrochimica Acta, 1993
- A Thermodynamic and Kinetic Study of Electrochemical Lithium Intercalation in Na0.33 V 2 O 5 Bronze Prepared by a Sol‐Gel ProcessJournal of the Electrochemical Society, 1990
- Electrochemical sodium intercalation in Na0.33V2O5 bronze synthesized by a sol-gel processSolid State Ionics, 1989