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Facile and controllable electrochemical reduction of graphene oxide and its applications

Journal of Materials Chemistry · 2009 · Vol. 20(4) · pp. 743–748
Yuyan ShaoJun WangMark EngelhardChongmin WangYuehe Lin

Abstract

Graphene oxide is electrochemically reduced which is called electrochemically reduced graphene oxide (ER-G). ER-G is characterized with scanning electron microscopy, transmission electron microscopy, X-ray photoelectron spectroscopy, and X-ray diffraction. The oxygen content is significantly decreased and the sp2 carbon is restored after electrochemical reduction. ER-G exhibits much higher electrochemical capacitance and cycling durability than carbon nanotubes (CNTs) and chemically reduced graphene; the specific capacitance measured with cyclic voltammetry (20 mV s−1) is ∼165, ∼86, and ∼100 F g−1 for ER-G, CNTs, and chemically reduced graphene, respectively. The electrochemical reduction of oxygen and hydrogen peroxide are greatly enhanced on ER-G electrodes as compared with CNTs. ER-G has shown promising features for applications in energy storage, biosensors, and electrocatalysis.

Advancements in Battery MaterialsGraphene research and applicationsSupercapacitor Materials and FabricationGrapheneCyclic voltammetryMaterials scienceOxideElectrochemistryElectrocatalystX-ray photoelectron spectroscopyScanning electron microscopeCarbon nanotubeTransmission electron microscopy

Funding

  • U.S. Department of Energy
  • Battelle
  • Biological and Environmental Research
  • Laboratory Directed Research and Development
  • Pacific Northwest National Laboratory
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860
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References
The growth and morphology of epitaxial multilayer graphene
Journal of Physics Condensed Matter · 2008 · 852 citations
PEGylated Nanographene Oxide for Delivery of Water-Insoluble Cancer Drugs
Journal of the American Chemical Society · 2008 · 3,582 citations
Exfoliated Graphene Separated by Platinum Nanoparticles
Chemistry of Materials · 2008 · 1,115 citations
Facile Synthesis and Characterization of Graphene Nanosheets
The Journal of Physical Chemistry C · 2008 · 2,074 citations
The rise of graphene
Nature Materials · 2007 · 39,026 citations
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