© 2016 The Royal Society of Chemistry. The nature of zero bandgap has limited the applications of graphene for potential electronic devices, such as p-n junctions and transistors, etc. Here we report a simple methodology that can tune the bandgap of graphene by using ultraviolet (UV) irradiation. Most importantly, such a bandgap transition is reversible and can be controlled by the alternative treatment of UV irradiation and dark storage. In addition, density functional theory (DFT) calculations are performed to reveal the underlying mechanism of bandgap behavior in this reversible transition. Both experimental and computational results demonstrate that it is a promising technology for applications of graphene in electronic devices
The electronic states of partially hydrogenated graphene (HG) structures are studied by the density ...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The electronic properties of single-layer, CVD-grown graphene were modulated by deep ultraviolet (DU...
Graphene has stimulated enormous interest due to its intriguing structure and fascinating properties...
Large sheet resistance is the critical problem of graphene for application in electronic and optoele...
The electronic properties of graphene are tunable via doping, making it attractive in low dimensiona...
© 2016 The Royal Society of Chemistry.Large sheet resistance is the critical problem of graphene for...
3 páginas, 3 figuras.Could a laser field lead to the much sought-after tunable band gaps in graphene...
Using density functional theory, we study the structure, electronic properties and partial charges o...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
Control of graphene memory devices using photons, via control of the charge-transfer process, is dem...
Graphene is a gapless semiconductor with a high charge carrier mobility. In an attempt to apply this...
The electronic properties of graphene are tunable via doping, making it attractive in low dimensiona...
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...
The electronic states of partially hydrogenated graphene (HG) structures are studied by the density ...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The electronic properties of single-layer, CVD-grown graphene were modulated by deep ultraviolet (DU...
Graphene has stimulated enormous interest due to its intriguing structure and fascinating properties...
Large sheet resistance is the critical problem of graphene for application in electronic and optoele...
The electronic properties of graphene are tunable via doping, making it attractive in low dimensiona...
© 2016 The Royal Society of Chemistry.Large sheet resistance is the critical problem of graphene for...
3 páginas, 3 figuras.Could a laser field lead to the much sought-after tunable band gaps in graphene...
Using density functional theory, we study the structure, electronic properties and partial charges o...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
Control of graphene memory devices using photons, via control of the charge-transfer process, is dem...
Graphene is a gapless semiconductor with a high charge carrier mobility. In an attempt to apply this...
The electronic properties of graphene are tunable via doping, making it attractive in low dimensiona...
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...
The electronic states of partially hydrogenated graphene (HG) structures are studied by the density ...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The electronic properties of single-layer, CVD-grown graphene were modulated by deep ultraviolet (DU...