Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/discharge of electrical energy. In this study, the laser-based fabrication of reduced graphene oxide (rGO) electrodes for supercapacitors is demonstrated with several new features of laser irradiation. A conventional CO2 laser irradiation system is equipped with (1) a nitrogen blower to avoid combustion of the GO paper, (2) a cylindrical lens for producing a wide line beam, and (3) an optical chopper system for generating an intensity-modulated laser beam. Scanning of the intensity-modulated line beam transforms an extended area of GO into chemically reduced and physically porous graphene. The effects of the laser beam modifications and scanning ...
Porous multicomponent surface layers consisting of bimetallic oxide nanoparticles, carbon nanomateri...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Graphene was prepared by excimer laser irradiation reduction of graphite oxide dissolved in an aqueo...
Graphene is a form of carbon that has high electrical conductivity, a planar structure and substanti...
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based mate...
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...
Laser reduction of graphene oxide has attracted significant interest in recent years, because it off...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
Due to its unique mechanical and electrical properties, the 2D carbon, graphene, has gained tremendo...
10th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2015, 7-11 A...
Focused laser beam induced self-propagating reaction has been developed for fabrication of graphene ...
The transcendence toward smarter technologies and the rapid expansion of the Internet of Things requ...
Porous multicomponent surface layers consisting of bimetallic oxide nanoparticles, carbon nanomateri...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Graphene was prepared by excimer laser irradiation reduction of graphite oxide dissolved in an aqueo...
Graphene is a form of carbon that has high electrical conductivity, a planar structure and substanti...
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based mate...
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...
Laser reduction of graphene oxide has attracted significant interest in recent years, because it off...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
Due to its unique mechanical and electrical properties, the 2D carbon, graphene, has gained tremendo...
10th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2015, 7-11 A...
Focused laser beam induced self-propagating reaction has been developed for fabrication of graphene ...
The transcendence toward smarter technologies and the rapid expansion of the Internet of Things requ...
Porous multicomponent surface layers consisting of bimetallic oxide nanoparticles, carbon nanomateri...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...