The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets, in order to achieve higher reaction yield and faster kinetics. Aqueous GO solutions have been used to produce uniform GO films on a polyethylene terephthalate substrate, generating graphene patterns in a controlled way (widths of a few tens of microns). The reduction of GO deposited on the polymeric substrate has been performed by using a Nd:YVO4 continuous-wave frequency-duplicated laser. Spectroscopic and diffractometric characterizations (FT-IR, visible-NIR, Raman, XPS, and XRD) have shown that the reduction process induced by the laser annealing technique is mainly due to dehydration of the GO layers. It has been obtained by means...
Reduction graphene oxide (r-GO) lines on graphene oxide (GO) films can be prepared by a photocatalyt...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
Graphene production using a continuous or pulsed laser beam focused on a substrate of graphite oxide...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
Graphene oxide (GO) offers excellent possibilities that are recently demonstrated in many applicatio...
In recent years, a great interest have been developed in the research of graphene and graphene oxide...
Non-conductive graphene oxide (GO) particles (70% carbon, 30% oxygen) synthesized directly from inex...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
We have developed a novel and straightforward approach for the green synthesis of reduced graphite o...
We report the development of a facile laser reduction method for the synthesis of laser converted gr...
We have developed a novel and straightforward approach for the green synthesis of reduced graphite o...
Reduction graphene oxide (r-GO) lines on graphene oxide (GO) films can be prepared by a photocatalyt...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...
The Hummers’ method for graphite oxide (GO) preparation has been applied to graphite nanoplatelets,...
Graphene production using a continuous or pulsed laser beam focused on a substrate of graphite oxide...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
Graphene oxide (GO) offers excellent possibilities that are recently demonstrated in many applicatio...
In recent years, a great interest have been developed in the research of graphene and graphene oxide...
Non-conductive graphene oxide (GO) particles (70% carbon, 30% oxygen) synthesized directly from inex...
The present report discusses a single step method to reduce graphene oxide via laser irradiation. A...
In this study, reduced-graphene oxide (GO) circuits were directly patterned on glass using an indust...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
We have developed a novel and straightforward approach for the green synthesis of reduced graphite o...
We report the development of a facile laser reduction method for the synthesis of laser converted gr...
We have developed a novel and straightforward approach for the green synthesis of reduced graphite o...
Reduction graphene oxide (r-GO) lines on graphene oxide (GO) films can be prepared by a photocatalyt...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
Laser reduction of graphene oxide is a promising technology for manufacturing advanced devices such ...