The utilisation of graphene structures as photonics materials mandates that an optically active electronic energy gap be formed. Opening of a gap in graphene has been demonstrated by functionalisation with H, F, or O atoms, while experimental observations of graphene oxide have hinted at interesting optical properties, with the potential for absorption of visible light. As such, our analysis is focused on O functionalisation of graphene. We present results from extensive ab initio and hybrid DFT calculations, demonstrating the creation of an optically active gap
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
We report broadband visible photoluminescence from solid graphene oxide, and modifications of the em...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Graphene, despite its many remarkable material properties, is fundamentally limited for many photoni...
Graphene, despite its many remarkable material properties, is fundamentally limited for many photoni...
Graphene, despite its many remarkable material properties, is fundamentally limited for many photoni...
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...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
We report broadband visible photoluminescence from solid graphene oxide, and modifications of the em...
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
We report broadband visible photoluminescence from solid graphene oxide, and modifications of the em...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
Graphene, despite its many remarkable material properties, is fundamentally limited for many photoni...
Graphene, despite its many remarkable material properties, is fundamentally limited for many photoni...
Graphene, despite its many remarkable material properties, is fundamentally limited for many photoni...
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...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
We report broadband visible photoluminescence from solid graphene oxide, and modifications of the em...
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
We report broadband visible photoluminescence from solid graphene oxide, and modifications of the em...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...