α-Graphyne is a two-dimensional sheet of sp–sp<sup>2</sup> hybridized carbon atoms in a honeycomb lattice. While the geometrical structure is similar to that of graphene, the hybridized triple bonds give rise to electronic structure that is different from that of graphene. Similar to graphene, α-graphyne can be stacked in bilayers with two stable configurations, but the different stackings have very different electronic structures: one is predicted to have gapless parabolic bands, and the other, a tunable band gap which is attractive for applications. In order to realize applications, it is crucial to understand which stacking is more stable. This is difficult to model, as the stability is a result of weak interlayer van der Waals interacti...
We explore the properties of systems composed of two or three layers of graphene and hexagonal boron...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
The neighboring layers in bilayer (and few-layer) graphenes of both AA and AB stacking motifs are kn...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...
© 2017 IOP Publishing Ltd.AA-stacked graphite and closely related structures, where carbon atoms are...
© 2017 IOP Publishing Ltd.AA-stacked graphite and closely related structures, where carbon atoms are...
Graphene is a two-dimensional (2D) crystal of carbon atoms packed in a honeycomb lattice. Because of...
textIn this thesis we investigate the electronic band structures and the correlations in chirally (...
Based on ab initio calculations, we study the effect of intercalating twisted bilayer graphene with ...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
In this study, we used a combination of diffusion Monte Carlo and density functional theory calculat...
α-, β-, γ- and 6,6,12-graphynes are well established one-atom-thick two-dimensional (2D) materials i...
In this communication, we present results of theoretical studies of various systems where Van der Wa...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
We explore the properties of systems composed of two or three layers of graphene and hexagonal boron...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
The neighboring layers in bilayer (and few-layer) graphenes of both AA and AB stacking motifs are kn...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...
© 2017 IOP Publishing Ltd.AA-stacked graphite and closely related structures, where carbon atoms are...
© 2017 IOP Publishing Ltd.AA-stacked graphite and closely related structures, where carbon atoms are...
Graphene is a two-dimensional (2D) crystal of carbon atoms packed in a honeycomb lattice. Because of...
textIn this thesis we investigate the electronic band structures and the correlations in chirally (...
Based on ab initio calculations, we study the effect of intercalating twisted bilayer graphene with ...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
In this study, we used a combination of diffusion Monte Carlo and density functional theory calculat...
α-, β-, γ- and 6,6,12-graphynes are well established one-atom-thick two-dimensional (2D) materials i...
In this communication, we present results of theoretical studies of various systems where Van der Wa...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
We explore the properties of systems composed of two or three layers of graphene and hexagonal boron...
The evolution of electronic structure of graphene nanoribbons (GNRs) as a function of the number of ...
The neighboring layers in bilayer (and few-layer) graphenes of both AA and AB stacking motifs are kn...