By virtue of the small active volume around Cu catalyst, graphene is synthesized by fast chemical vapor deposition (CVD) in a cold wall vertical system. Despite being highly polycrystalline, it is as conductive and transparent as standard graphene and can be used in light emitting diodes as transparent electrodes. 7-10 nm indium tin oxide (ITO) contact layer is inserted between the graphene and p-GaN to enhance hole injection. Devices with forward voltage and transparency comparable to those using traditional 240 nm ITO are achieved with better ultraviolet performances, hinting the promising future for application-oriented graphene by rapid CVD
A novel carbon-enclosed chemical vapor deposition (CE-CVD) to grow high quality monolayer graphene o...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Graphene is a promising transparent conducting electrode (TCE) for organic photovoltaics (OPVs) due ...
By virtue of the small active volume around Cu catalyst, graphene is synthesized by fast chemical va...
Ordered and dense GaN light emitting nanorods are studied with polycrystalline graphene grown by rap...
Low dimensional sp2 carbon-based materials, i.e. carbon nanotube (CNT) and graphene, have attracted ...
A transparent conductive electrode (TCE) is an important component in many of our modern optoelectro...
There is a need for lasers in the 370nm - 470nm spectrum (near ultraviolet - blue) for applications ...
Graphene contacts to p-GaN are considered as an alternative to indium–tin-oxide transparent electrod...
Graphene contacts to p-GaN are considered as an alternative to indium–tin-oxide transparent electrod...
Abstract—Direct formation of large-area carbon thin films on gallium nitride by chemical vapor depos...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
We report on the application of graphene (Gr)/copper (Cu) shell/core nanowires (NWs) as a transparen...
| openaire: EC/H2020/785219/EU//GrapheneCore2 | openaire: EC/H2020/881603/EU//GrapheneCore3Graphene ...
A novel carbon-enclosed chemical vapor deposition (CE-CVD) to grow high quality monolayer graphene o...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Graphene is a promising transparent conducting electrode (TCE) for organic photovoltaics (OPVs) due ...
By virtue of the small active volume around Cu catalyst, graphene is synthesized by fast chemical va...
Ordered and dense GaN light emitting nanorods are studied with polycrystalline graphene grown by rap...
Low dimensional sp2 carbon-based materials, i.e. carbon nanotube (CNT) and graphene, have attracted ...
A transparent conductive electrode (TCE) is an important component in many of our modern optoelectro...
There is a need for lasers in the 370nm - 470nm spectrum (near ultraviolet - blue) for applications ...
Graphene contacts to p-GaN are considered as an alternative to indium–tin-oxide transparent electrod...
Graphene contacts to p-GaN are considered as an alternative to indium–tin-oxide transparent electrod...
Abstract—Direct formation of large-area carbon thin films on gallium nitride by chemical vapor depos...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
We report on the application of graphene (Gr)/copper (Cu) shell/core nanowires (NWs) as a transparen...
| openaire: EC/H2020/785219/EU//GrapheneCore2 | openaire: EC/H2020/881603/EU//GrapheneCore3Graphene ...
A novel carbon-enclosed chemical vapor deposition (CE-CVD) to grow high quality monolayer graphene o...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Graphene is a promising transparent conducting electrode (TCE) for organic photovoltaics (OPVs) due ...