Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and deposited on functionalized flexible substrates using inkjet printing technology. Once deposited, the electrical conductivity of the GO film can be restored through laser assisted thermal reduction. Unfortunately, the inkjet nozzle diameter ( 3c40\u3bcm) places a limit on the printed feature size. In contrast, a tightly focused femtosecond pulsed laser can create precise micro features with dimensions in the order of 2 to 3 \u3bcm. The smallest feature size produced by laser microfabrication is a function of the laser beam diameter, power level, feed rate, material characteristics and spatial resolution of the micropositioning system. Laser micr...
This article reviews the recent photonic applications on graphene oxide and reduced graphene oxide f...
Printing of binder-free graphene electrodes directly on substrates has the potential to enable a lar...
Femtosecond laser direct writing technique is potential micro-patterning and micro-fabrication metho...
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...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
A rapid low-cost technology for the production of laser-scribed highly conductive reduced-graphene o...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
This research introduces a readily available and non-chemical combinatorial production approach, kno...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
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...
This article reviews the recent photonic applications on graphene oxide and reduced graphene oxide f...
Printing of binder-free graphene electrodes directly on substrates has the potential to enable a lar...
Femtosecond laser direct writing technique is potential micro-patterning and micro-fabrication metho...
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...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
A rapid low-cost technology for the production of laser-scribed highly conductive reduced-graphene o...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
This research introduces a readily available and non-chemical combinatorial production approach, kno...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
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...
This article reviews the recent photonic applications on graphene oxide and reduced graphene oxide f...
Printing of binder-free graphene electrodes directly on substrates has the potential to enable a lar...
Femtosecond laser direct writing technique is potential micro-patterning and micro-fabrication metho...