We present a systematic density functional theory study of the electronic properties, optical spectra, and relative thermodynamic stability of semiconducting graphene nanoribbons. We consider ribbons with different edge nature including bare and hydrogen-terminated ribbons, several crystallographic orientations, and widths up to 3 nm. Our results can be extrapolated to wider ribbons providing a qualitative way of determining the electronic properties of ribbons with widths of practical significance. We predict that in order to produce materials with band gaps similar to Ge or InN, the width of the ribbons must be between 2 and 3 nm. If larger bang gap ribbons are needed (like Si, InP, or GaAs), their width must be reduced to 1−2 nm. Accordi...
Extended all-sp2-carbon macromolecules have the potential to replace silicon in integrated nanometer...
The electronic structure of isolated finite graphene nanoribbons is investigated by solving, at the ...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
The general objective of the research project is to study the electronic properties of graphene nan...
The energetic stability, electronic and magnetic properties of chiral graphene nanoribbons (GNRs) wi...
In this article, we put forward a resolution to the prolonged ambiguity in energy band gaps between ...
Quantum size effects in armchair graphene nanoribbons (AGNRs) with hydrogen termination are investig...
We report a first-principles study of edgereconstructed, few-layered graphene nanoribbons. We find ...
Quantum size effects in armchair graphene nanoribbons (AGNRs) with hydrogen termination are investig...
We determine the stability, the geometry, the electronic, and magnetic structure of hydrogen-termina...
In this study, we investigated the edge formation energy of hydrogen-terminated graphene nanoribbons...
Graphene nanoribbons (GNRs) are strips of graphene, featuring narrow widths at the nanometer scale. ...
Extended all-sp<sup>2</sup>-carbon macromolecules have the potential to replace silicon in integrate...
The electronic structure of isolated finite graphene nanoribbons is investigated by solving, at the ...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
Extended all-sp2-carbon macromolecules have the potential to replace silicon in integrated nanometer...
The electronic structure of isolated finite graphene nanoribbons is investigated by solving, at the ...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
The general objective of the research project is to study the electronic properties of graphene nan...
The energetic stability, electronic and magnetic properties of chiral graphene nanoribbons (GNRs) wi...
In this article, we put forward a resolution to the prolonged ambiguity in energy band gaps between ...
Quantum size effects in armchair graphene nanoribbons (AGNRs) with hydrogen termination are investig...
We report a first-principles study of edgereconstructed, few-layered graphene nanoribbons. We find ...
Quantum size effects in armchair graphene nanoribbons (AGNRs) with hydrogen termination are investig...
We determine the stability, the geometry, the electronic, and magnetic structure of hydrogen-termina...
In this study, we investigated the edge formation energy of hydrogen-terminated graphene nanoribbons...
Graphene nanoribbons (GNRs) are strips of graphene, featuring narrow widths at the nanometer scale. ...
Extended all-sp<sup>2</sup>-carbon macromolecules have the potential to replace silicon in integrate...
The electronic structure of isolated finite graphene nanoribbons is investigated by solving, at the ...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
Extended all-sp2-carbon macromolecules have the potential to replace silicon in integrated nanometer...
The electronic structure of isolated finite graphene nanoribbons is investigated by solving, at the ...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...