The effects of edge covalent functionalization on the structural, electronic, and optical properties of elongated armchair graphene nanoflakes (AGNFs) are analyzed in detail for a wide range of terminations, within the framework of Hartree–Fock-based semiempirical methods. The chemical features of the functional groups, their distribution, and the resulting system symmetry are identified as the key factors that determine the modification of strutural and optoelectronic features. While the electronic gap is always reduced in the presence of substituents, functionalization-induced distortions contribute to the observed lowering by about 35–55%. This effect is paired with a red shift of the first optical peak, corresponding to about 75% of the...
Electronic and optical properties of the graphene nanoflakes (GNFs) are investigated with and withou...
The addition of graphene nano-flakes to the suite of materials for graphene-based nanotechnology req...
We report combined first-principle and tight-binding (TB) calculations to simulate the effects of ch...
The effects of edge covalent functionalization on the structural, electronic, and optical properties...
The effects of edge covalent functionalization on the structural, electronic, and optical properties...
We apply density functional theory to study the optical properties of armchair graphene nanoribbons ...
In recent years there has been significant debate on whether the edge type of graphene nanoflakes (G...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
We investigated theoretically the effect of covalent edge functionalization, with organic functional...
International audienceDensity functional calculations are used to perform a systematic study of the ...
We explore the implementation of specific optical properties of armchair graphene nanoribbons (AGNRs...
The optical properties of coupled graphene nanoflakes are investigated theoretically within the fram...
The optical properties of coupled graphene nanoflakes are investigated theoretically within the fram...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
Graphene nano flakes provide a range of opportunities for engineering graphene for future applicatio...
Electronic and optical properties of the graphene nanoflakes (GNFs) are investigated with and withou...
The addition of graphene nano-flakes to the suite of materials for graphene-based nanotechnology req...
We report combined first-principle and tight-binding (TB) calculations to simulate the effects of ch...
The effects of edge covalent functionalization on the structural, electronic, and optical properties...
The effects of edge covalent functionalization on the structural, electronic, and optical properties...
We apply density functional theory to study the optical properties of armchair graphene nanoribbons ...
In recent years there has been significant debate on whether the edge type of graphene nanoflakes (G...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
We investigated theoretically the effect of covalent edge functionalization, with organic functional...
International audienceDensity functional calculations are used to perform a systematic study of the ...
We explore the implementation of specific optical properties of armchair graphene nanoribbons (AGNRs...
The optical properties of coupled graphene nanoflakes are investigated theoretically within the fram...
The optical properties of coupled graphene nanoflakes are investigated theoretically within the fram...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
Graphene nano flakes provide a range of opportunities for engineering graphene for future applicatio...
Electronic and optical properties of the graphene nanoflakes (GNFs) are investigated with and withou...
The addition of graphene nano-flakes to the suite of materials for graphene-based nanotechnology req...
We report combined first-principle and tight-binding (TB) calculations to simulate the effects of ch...