International audienceDensity functional calculations are used to perform a systematic study of the effect of edge-functionalization on the structure and electronic properties of graphene nanoribbons (GNRs). −H, −F, −Cl, −Br, −S, −SH, and −OH edge-functionalization of armchair, zigzag, and reconstructed Klein-type GNRs was considered. The most energetically favorable edge structure varies depending on the choice of functional group. It is shown, for the first time, that reconstructed Klein-type GNRs are important stable configurations for several edge-functional groups. Band gaps using three different exchange-correlation functionals are calculated. The band gap for armchair GNRs can be tuned over a range of 1.2 eV by varying the edge-funct...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
A prerequisite for future graphene nanoribbon (GNR) applications is the ability to fine-tune the ele...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
In this article, we put forward a resolution to the prolonged ambiguity in energy band gaps between ...
Control of the band gap of graphene nanoribbons is an important problem for the fabrication of effec...
Control of the band gap of graphene nanoribbons is an important problem for the fabrication of effec...
Graphene nanoribbons (GNRs) are narrow strips of graphene that have exceptional phys-ical and electr...
Graphene nanoribbons (GNRs) are narrow strips of graphene that have exceptional phys-ical and electr...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
Based on the density functional theory, we calculate the dependence of the band structures of bilaye...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
A prerequisite for future graphene nanoribbon (GNR) applications is the ability to fine-tune the ele...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
International audienceDensity functional calculations are used to perform a systematic study of the ...
In this article, we put forward a resolution to the prolonged ambiguity in energy band gaps between ...
Control of the band gap of graphene nanoribbons is an important problem for the fabrication of effec...
Control of the band gap of graphene nanoribbons is an important problem for the fabrication of effec...
Graphene nanoribbons (GNRs) are narrow strips of graphene that have exceptional phys-ical and electr...
Graphene nanoribbons (GNRs) are narrow strips of graphene that have exceptional phys-ical and electr...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
Based on the density functional theory, we calculate the dependence of the band structures of bilaye...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
A prerequisite for future graphene nanoribbon (GNR) applications is the ability to fine-tune the ele...