The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electronic device applications of graphene-based materials. Efficient and cost-effective fabrication of highly uniform GO films and the successive reduction into rGO on a large area is still a cumbersome task through conventional protocols. Improved film casting of GO sheets on a polymeric substrate with quick and green reduction processes has a potential that may establish a path to the practical flexible electronics. Herein, we report a facile deposition process of GO on flexible polymer substrates to create highly uniform thin films over a large area by a flow-enabled self-assembly approach. The self-assembly of GO sheets was successfully perfor...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
A novel thin film transfer mechanism has been studied and developed to transfer chemically reduced g...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
A rapid low-cost technology for the production of laser-scribed highly conductive reduced-graphene o...
Flexible electronic circuitry is an emerging technology that will significantly impact the future of...
Non-conductive graphene oxide (GO) particles (70% carbon, 30% oxygen) synthesized directly from inex...
Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and dep...
The fabrication of bendable electronic devices is a scientific-technological area of very rapid adva...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
We demonstrate a rapid and facile approach towards scalable patterning of reduced graphene oxide (rG...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
International audienceReduced graphene oxide (rGO) currently represents an attractive alternative ma...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
A novel thin film transfer mechanism has been studied and developed to transfer chemically reduced g...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
A rapid low-cost technology for the production of laser-scribed highly conductive reduced-graphene o...
Flexible electronic circuitry is an emerging technology that will significantly impact the future of...
Non-conductive graphene oxide (GO) particles (70% carbon, 30% oxygen) synthesized directly from inex...
Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and dep...
The fabrication of bendable electronic devices is a scientific-technological area of very rapid adva...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
We demonstrate a rapid and facile approach towards scalable patterning of reduced graphene oxide (rG...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
International audienceReduced graphene oxide (rGO) currently represents an attractive alternative ma...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
Miniaturization of electronic devices and the advancement of Internet of Things pose exciting challe...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
A novel thin film transfer mechanism has been studied and developed to transfer chemically reduced g...