Graphene was prepared by excimer laser irradiation reduction of graphite oxide dissolved in an aqueous solution at different laser energies and irradiation time. The morphologies and structure of the laser reduced graphene were characterized using scanning electron microscopy, low angle X-ray diffraction (XRD) and X-ray photoelectron spectroscopy. The XRD results confirm that the deoxygenation of the graphite oxide sheets occurred almost completely for all laser irradiation conditions used. The graphene fabricated by laser irradiation reduction appears to be randomly aggregated, crumpled, disordered and small sheet solid material. The total amount of oxygen functional groups reduced significantly and the CC/CO intensity ratio increased, how...
A versatile method based on the matrix assisted pulsed laser evaporation (MAPLE) technique was used ...
To ensure maximum comfort for the wearer, electronic components that include energy harvesters need ...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
Graphene is a form of carbon that has high electrical conductivity, a planar structure and substanti...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
Laser reduction of graphene oxide has attracted significant interest in recent years, because it off...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based mate...
Focused laser beam induced self-propagating reaction has been developed for fabrication of graphene ...
Due to its unique mechanical and electrical properties, the 2D carbon, graphene, has gained tremendo...
A controlled high powered CO2 laser system is used to reduce and pattern graphene oxide (GO) film su...
Graphene-based supercapacitors are powerful devices for supporting smart wearable electronics. Howev...
Graphene has been regarded as a potential application material in the field of new energy conversion...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
We report the development of a facile laser reduction method for the synthesis of laser converted gr...
A versatile method based on the matrix assisted pulsed laser evaporation (MAPLE) technique was used ...
To ensure maximum comfort for the wearer, electronic components that include energy harvesters need ...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
Graphene is a form of carbon that has high electrical conductivity, a planar structure and substanti...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
Laser reduction of graphene oxide has attracted significant interest in recent years, because it off...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based mate...
Focused laser beam induced self-propagating reaction has been developed for fabrication of graphene ...
Due to its unique mechanical and electrical properties, the 2D carbon, graphene, has gained tremendo...
A controlled high powered CO2 laser system is used to reduce and pattern graphene oxide (GO) film su...
Graphene-based supercapacitors are powerful devices for supporting smart wearable electronics. Howev...
Graphene has been regarded as a potential application material in the field of new energy conversion...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
We report the development of a facile laser reduction method for the synthesis of laser converted gr...
A versatile method based on the matrix assisted pulsed laser evaporation (MAPLE) technique was used ...
To ensure maximum comfort for the wearer, electronic components that include energy harvesters need ...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...