Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of this two-dimensional material in the energy range of the visible light spectrum. By means of ab initio calculations, based on density functional theory at the generalized gradient approximation level, we investigated electronic properties of partially reduced graphene oxide, modelled as periodic array of small islands of pristine graphene embedded in an infinite sheet of GO. The calculations demonstrated that, by varying the size of the graphene islands from two to eight carbon atoms, it was possible to tune the electronic band gap in a range from 4.38 to 1.31 eV, which is of great importance to the utilization of graphene-based materials in...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The controlled and patterned reduction of graphene oxide offers a promising method to tune the elect...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...