Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary electronic, optical, thermal, and mechanical properties. However, device fabrication is a well-known challenge and requires novel fabrication methods to realize the complex integration of graphene-based devices. Here, we demonstrate direct laser writing of reduced graphene oxide using femtosecond-laser irradiation at lambda = 795 nm. We perform a systematic study of the reduction process of graphene oxide to graphene by varying both the laser fluence and the pulse repetition rate. Our observations show that the reduction has both thermal and non-thermal features, and suggest that we can achieve better resolution and conductivity using kHz pu...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
10th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2015, 7-11 A...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
Graphene oxide (GO) offers excellent possibilities that are recently demonstrated in many applicatio...
*S Supporting Information ABSTRACT: Reported here is femtosecond laser mediated bandgap tailoring of...
Femtosecond laser direct writing technique is potential micro-patterning and micro-fabrication metho...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
Laser reduction of graphene oxide has attracted significant interest in recent years, because it off...
Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and dep...
Flexible electronic circuitry is an emerging technology that will significantly impact the future of...
Femtosecond laser direct writing of reduced graphene oxide is a promising technique for micropattern...
Reported here is femtosecond laser mediated bandgap tailoring of graphene oxides (GOs) for direct fa...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
10th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2015, 7-11 A...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
Graphene oxide (GO) offers excellent possibilities that are recently demonstrated in many applicatio...
*S Supporting Information ABSTRACT: Reported here is femtosecond laser mediated bandgap tailoring of...
Femtosecond laser direct writing technique is potential micro-patterning and micro-fabrication metho...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
Laser reduction of graphene oxide has attracted significant interest in recent years, because it off...
Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and dep...
Flexible electronic circuitry is an emerging technology that will significantly impact the future of...
Femtosecond laser direct writing of reduced graphene oxide is a promising technique for micropattern...
Reported here is femtosecond laser mediated bandgap tailoring of graphene oxides (GOs) for direct fa...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
10th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2015, 7-11 A...