Carbon nanostructures are promising electrode materials for energy storage devices because of their unique physical and chemical properties. Modification of the surface improves the electrochemical properties of those materials because of the changes in morphology, diffusion properties, and inclusion of additional contributions to redox processes. Oxygen-containing functional groups and nitrogen doped into the carbon matrix significantly contribute to the electrochemical behavior of reduced graphite oxide (RGO). In this work, RGO was synthesized during hydrothermal treatment of graphite oxide with a hydrazine sulfate aqueous solution. Different amounts of hydrazine sulfate were used to synthesize RGO with different nitrogen contents in the ...
Nitrogen doped (N-doped) porous reduced graphene oxide (rGO) is successfully obtained by a two-step ...
Herein we use Nitrogen-doped reduced Graphene Oxide (N-rGO) as the active material in supercapacitor...
Ultrafine Co3O4 nanocrystals homogeneously attached to nitrogen doped reduced graphene oxide (rGO) b...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
MasterCarbon based materials such as graphite, graphene oxide and reduced graphene oxides have appre...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
© 2019 by the authors.N-doped (NrGO) and non-doped (rGO) graphenic materials are prepared by oxidati...
The effects of the crystallinity of natural graphites on the electrochemical performance of the resu...
A straightforward, one-step route has been established to fabricate reduced- (rGO) and nitrogen-dope...
To improve the electrochemical performance of graphene materials, nitrogen-doped graphene sheets (NG...
Nitrogen doped (N-doped) porous reduced graphene oxide (rGO) is successfully obtained by a two-step ...
Herein we use Nitrogen-doped reduced Graphene Oxide (N-rGO) as the active material in supercapacitor...
Ultrafine Co3O4 nanocrystals homogeneously attached to nitrogen doped reduced graphene oxide (rGO) b...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
MasterCarbon based materials such as graphite, graphene oxide and reduced graphene oxides have appre...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
© 2019 by the authors.N-doped (NrGO) and non-doped (rGO) graphenic materials are prepared by oxidati...
The effects of the crystallinity of natural graphites on the electrochemical performance of the resu...
A straightforward, one-step route has been established to fabricate reduced- (rGO) and nitrogen-dope...
To improve the electrochemical performance of graphene materials, nitrogen-doped graphene sheets (NG...
Nitrogen doped (N-doped) porous reduced graphene oxide (rGO) is successfully obtained by a two-step ...
Herein we use Nitrogen-doped reduced Graphene Oxide (N-rGO) as the active material in supercapacitor...
Ultrafine Co3O4 nanocrystals homogeneously attached to nitrogen doped reduced graphene oxide (rGO) b...