The paper focuses on superlattices consisting of two coplanar fragments of one-layer graphene nanoribbons that have different width and are connected at an angle. Classification of such superlattices was carried out; their electronic properties were studied using the tight-binding method. It was demonstrated that in superlattices consisting of two fragments of graphene nanoribbons with armchair edges connected at an angle of 60º, the band gap can be regulated by the number of dimeric carbon atom chains of one of the fragments. In that case one can observe a periodic dependence of the band gap on the number of chains with a characteristic period equal to three dimeric chains. The number of dimeric chains of the second superlattice fragment r...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Theoretically, it has been demonstrated that armchair Graphene nanoribbons (GNRs) can be divided int...
The paper focuses on superlattices consisting of two coplanar fragments of one-layer graphene nanori...
The paper focuses on superlattices consisting of two coplanar fragments of one-layer graphene nanori...
International audienceThis is the author accepted manuscript. The final version is available from Sp...
This is the author accepted manuscript. The final version is available from Springer Verlag via the ...
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...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
Graphene physics and edge effects have a substantial influence on the electronic structure of graphe...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
With the synthesis of a single atomic plane of graphite, namely, graphene honeycomb structure, a new...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Theoretically, it has been demonstrated that armchair Graphene nanoribbons (GNRs) can be divided int...
The paper focuses on superlattices consisting of two coplanar fragments of one-layer graphene nanori...
The paper focuses on superlattices consisting of two coplanar fragments of one-layer graphene nanori...
International audienceThis is the author accepted manuscript. The final version is available from Sp...
This is the author accepted manuscript. The final version is available from Springer Verlag via the ...
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...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
Deterministic band gap in quasi-one-dimensional nanoribbons is prerequisite for their integrated fun...
Graphene physics and edge effects have a substantial influence on the electronic structure of graphe...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
With the synthesis of a single atomic plane of graphite, namely, graphene honeycomb structure, a new...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
Theoretically, it has been demonstrated that armchair Graphene nanoribbons (GNRs) can be divided int...