Chemical doping can decrease sheet resistance of graphene while maintaining its high transparency. We report a new method to simultaneously transfer and dope chemical vapor deposition grown graphene onto a target substrate using a fluoropolymer as both the supporting and doping layer. Solvent was used to remove a significant fraction of the supporting fluoropolymer, but residual polymer remained that doped the graphene significantly. This contrasts with a more widely used supporting layer, polymethylmethacrylate, which does not induce significant doping during transfer. The fluoropolymer doping mechanism can be explained by the rearrangement of fluorine atoms on the graphene basal plane caused by either thermal annealing or soaking in solve...
We report the transfer of chemical vapour deposited graphene to polymer supports by utilizing therma...
Graphene, a two-dimensional monolayer of sp(2)-bonded carbon atoms, has been attracting great intere...
In this paper we explore the direct transfer via lamination of chemical vapor deposition graphene on...
The primary barrier to wider commercial adoption of graphene lies in reducing the sheet resistance ...
We report chemical doping (p-type) to reduce the sheet resistance of graphene films for the applicat...
The polymer-supported transfer of chemical vapor deposition (CVD)-grown graphene provides large-area...
Graphene has proven to be a promising material for transparent flexible electronics. In this study, ...
The primary barrier to wider commercial adoption of graphene lies in reducing the sheet resistance o...
The polymer-supported transfer of chemical vapor deposition (CVD)-grown graphene provides large-area...
The polymer-supported transfer of chemical vapor deposition (CVD)-grown graphene provides large-area...
Flexible electronics serve as the ubiquitous platform for the next-generation life science, environm...
Flexible electronics serve as the ubiquitous platform for the next-generation life science, environm...
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...
An efficient and reliable transfer for graphene onto the substrates of interests acts as the crucial...
We report the transfer of chemical vapour deposited graphene to polymer supports by utilizing therma...
Graphene, a two-dimensional monolayer of sp(2)-bonded carbon atoms, has been attracting great intere...
In this paper we explore the direct transfer via lamination of chemical vapor deposition graphene on...
The primary barrier to wider commercial adoption of graphene lies in reducing the sheet resistance ...
We report chemical doping (p-type) to reduce the sheet resistance of graphene films for the applicat...
The polymer-supported transfer of chemical vapor deposition (CVD)-grown graphene provides large-area...
Graphene has proven to be a promising material for transparent flexible electronics. In this study, ...
The primary barrier to wider commercial adoption of graphene lies in reducing the sheet resistance o...
The polymer-supported transfer of chemical vapor deposition (CVD)-grown graphene provides large-area...
The polymer-supported transfer of chemical vapor deposition (CVD)-grown graphene provides large-area...
Flexible electronics serve as the ubiquitous platform for the next-generation life science, environm...
Flexible electronics serve as the ubiquitous platform for the next-generation life science, environm...
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...
An efficient and reliable transfer for graphene onto the substrates of interests acts as the crucial...
We report the transfer of chemical vapour deposited graphene to polymer supports by utilizing therma...
Graphene, a two-dimensional monolayer of sp(2)-bonded carbon atoms, has been attracting great intere...
In this paper we explore the direct transfer via lamination of chemical vapor deposition graphene on...