Simultaneous reduction and defect restoration of graphene oxide nanoribbon (GONR) via plasma-assisted chemistry is demonstrated. Hydrogen (H2) and methane (CH4) gases are continuously dissociated in a plasma to produce atomic hydrogen and carbon-containing ions and radicals carried by the gas flow to react with and remove oxygen functional groups from GONR films. Detailed material characterization confirms that the synergistic effect of simultaneous reduction and defect restoration of GONR occurred during the H2/CH4 plasma treatment. Extensive optical transmittance measurement suggests that the optical energy gap of the as-treated reduced GONR (r-GONR) can be engineered by controlling the plasma exposure time. Systematic electrical measurem...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
Graphene oxide (GO) monolayer sheets, transferred onto Si by the Langmuir-Blodgett technique, were s...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
Reduction of graphene oxide (GO) at low temperature and atmospheric pressure via plasma-assisted che...
Room temperature hydrogen plasma treatment on solution processed 300nm graphene oxide (GO) films on ...
Graphene with high electronic transport, large surface-to-volume ratio and nanometer thickness is ex...
Transparent, conductive, and mechanically flexible graphene films are seen as an alternative to indi...
AbstractA simple and efficient method to repair defects in graphene oxide (GO) is reported, accompan...
Fundamental studies on graphene (Gr) and its real device applications have been affected by unavoida...
Langmuir-Blodgett monolayer sheets of graphene oxide (GO) were transferred onto Si and SiO2/Si, and ...
The chemical oxidation method can be used to mass-produce graphene oxides (GOs) from highly oriented...
A facile green approach for the preparation of reduced graphene oxide (RGO), based on a non-thermal ...
AbstractA simple and efficient method to repair defects in graphene oxide (GO) is reported, accompan...
An environmentally benign and scalable route for the production of gram scale quantities of nitrogen...
A direct approach to functionalize and reduce pre-shaped graphene oxide 3D architectures is demonstr...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
Graphene oxide (GO) monolayer sheets, transferred onto Si by the Langmuir-Blodgett technique, were s...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
Reduction of graphene oxide (GO) at low temperature and atmospheric pressure via plasma-assisted che...
Room temperature hydrogen plasma treatment on solution processed 300nm graphene oxide (GO) films on ...
Graphene with high electronic transport, large surface-to-volume ratio and nanometer thickness is ex...
Transparent, conductive, and mechanically flexible graphene films are seen as an alternative to indi...
AbstractA simple and efficient method to repair defects in graphene oxide (GO) is reported, accompan...
Fundamental studies on graphene (Gr) and its real device applications have been affected by unavoida...
Langmuir-Blodgett monolayer sheets of graphene oxide (GO) were transferred onto Si and SiO2/Si, and ...
The chemical oxidation method can be used to mass-produce graphene oxides (GOs) from highly oriented...
A facile green approach for the preparation of reduced graphene oxide (RGO), based on a non-thermal ...
AbstractA simple and efficient method to repair defects in graphene oxide (GO) is reported, accompan...
An environmentally benign and scalable route for the production of gram scale quantities of nitrogen...
A direct approach to functionalize and reduce pre-shaped graphene oxide 3D architectures is demonstr...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
Graphene oxide (GO) monolayer sheets, transferred onto Si by the Langmuir-Blodgett technique, were s...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...