Integration of graphene on flexible and transparent supports, such as ITO/PET, represents a challenging goal for the realization of next-generation optoelectronic materials. In this context, reduced graphene oxide (rGO) results an elective material for its easy handling and wide range of possibilities for processing. We present two different synthetic routes to prepare an interface between rGO and ITO/PET by an electrochemical approach: a direct electrodeposition of rGO onto the ITO/PET support by reduction of GO monolayers suspended in water (one-step approach) and the reduction of bulk GO films previously deposited onto the ITO/PET support (two-step approach). XPS analysis revealed that in both cases rGO is formed onto the surface of ITO/...
The electrochemical reduction of graphene oxide (GO) is an environmentally friendly and energy-savin...
Chemically reduced graphene oxide (rGO) is widely studied as a transparent electrode, as it can be c...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
We demonstrate a rapid and facile approach towards scalable patterning of reduced graphene oxide (rG...
Here we report an electrochemical method to simultaneously reduce and delaminate graphene oxide (G-O...
Flexible, transparent, and conductive electrodes are prepared by reduction of the graphene oxide (GO...
Flexible and crystallized indium-tin oxide (ITO) thin films were successfully obtained on plastic po...
The isolation of free-standing graphene in 2004 was the spark for a new scientific revolution in the...
International audienceThe coating of electrical interfaces with reduced graphene oxide (rGO) films a...
Novel transparent electrodes, including graphene, silver nanowires (AgNWs) and poly(3,4-ethylenediox...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
Graphene oxide (GO) was modified by surface grafting and the product P-GO exhibited a surprisingly g...
The chemically reduced graphene oxide (rGO) was transferred onto polyethylene terephthalate (PET) su...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Using multi-functional oxide films, we report on the development of an integration strategy for scal...
The electrochemical reduction of graphene oxide (GO) is an environmentally friendly and energy-savin...
Chemically reduced graphene oxide (rGO) is widely studied as a transparent electrode, as it can be c...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
We demonstrate a rapid and facile approach towards scalable patterning of reduced graphene oxide (rG...
Here we report an electrochemical method to simultaneously reduce and delaminate graphene oxide (G-O...
Flexible, transparent, and conductive electrodes are prepared by reduction of the graphene oxide (GO...
Flexible and crystallized indium-tin oxide (ITO) thin films were successfully obtained on plastic po...
The isolation of free-standing graphene in 2004 was the spark for a new scientific revolution in the...
International audienceThe coating of electrical interfaces with reduced graphene oxide (rGO) films a...
Novel transparent electrodes, including graphene, silver nanowires (AgNWs) and poly(3,4-ethylenediox...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
Graphene oxide (GO) was modified by surface grafting and the product P-GO exhibited a surprisingly g...
The chemically reduced graphene oxide (rGO) was transferred onto polyethylene terephthalate (PET) su...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Using multi-functional oxide films, we report on the development of an integration strategy for scal...
The electrochemical reduction of graphene oxide (GO) is an environmentally friendly and energy-savin...
Chemically reduced graphene oxide (rGO) is widely studied as a transparent electrode, as it can be c...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...