The applications of Graphene characteristics of especially dictates the applications for which it is most suited for.
Graphene transparent film is as a matter of fact is somewhat less conductive then CVD graphene films. Graphene films can withstand physical deformation and paves way for application in flexible electronics.
Selective transformation of Graphene allows formation of electrical interconnections on flexible substrates. Above all this opens up its applicability in fabrication like flexible as well as transparent circuit interconnections, Field Effect Transistors (FETs) & Organic Light Emitting Diodes (OLEDs).
The Graphene are a part of electrodes for energy storage systems For example – Super capacitors, Lithium ion, Lead-Acid, Lithium Sulfur, Air-Aluminium etc. batteries in particular. Graphene particularly shows significant performance as anode material (NAM) in Lithium ion batteries as compared to graphite.
A Graphene has large surface to mass ratio, high electrical conductivity & moreover have high mechanical strength. This makes them NAMs for high capacity, fast-charging Lithium-ion batteries.
Lithium ion intercalation, on the other hand, into Graphene enhances specific capacity of the graphene nanostructures.
Low cost flexible solar cells can take advantage of large area Graphene chemically modified Graphene can be used subsequently as components for electron transport layers in developing organic perovskite based solar cells. Using Graphene specially enhances quantum efficiency as well as durability. Graphene are also useful materials for counter electrode in dye-sensitized ultralow cost solar cells based on liquid electrolyte.