We present the results of ab initio calculations of the effect of reconstruction and passivation of zigzag edges on the electronic and magnetic properties of triangular graphene quantum dots. We find that, similarly to nanoribbons, hydrogen-passivated ideal zigzag edges are energetically favored over the pentagon-heptagon zigzag. However, the reconstructed edge is more stable in the absence of hydrogen, thus, delayed passivation with H may lock the dot in such an unfavorable configuration. Both hydrogen-passivated edge morphologies lead to a band of states at the Fermi level. Unlike in nanoribbons, this quasidegenerate band results in net spin polarization for structures with zigzag edge of all sizes studied here. For triangular dots with p...
We study edge state magnetism in graphene nanostructures using a mean field theory of the Hubbard mo...
We investigate quantum transport properties of triangular graphene flakes with zigzag edges by using...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
We present a theory of electronic properties of gated triangular graphene quantum dots with zigzag e...
We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and br...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
Using the tight-binding approximation we calculated the diamagnetic susceptibility of graphene quant...
Graphene based quantum dots and antidots are two nanostructures of primary importance for their fund...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
Graphene quantum dots (GQDs) are nanosized fragments of graphene containing a bandgap caused by edge...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
When a Dirac electron is confined to a triangular graphene quantum dot with zigzag edges, its low-en...
We explore the effect of antidot size on electronic and magnetic properties of graphene antidot latt...
The magnetic and electronic properties of zigzag-triangular WS2 and MoS2 quantum dots are investigat...
The effects of ribbon size on the spin properties of zigzag graphene nanoribbon (ZGNR) with and with...
We study edge state magnetism in graphene nanostructures using a mean field theory of the Hubbard mo...
We investigate quantum transport properties of triangular graphene flakes with zigzag edges by using...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
We present a theory of electronic properties of gated triangular graphene quantum dots with zigzag e...
We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and br...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
Using the tight-binding approximation we calculated the diamagnetic susceptibility of graphene quant...
Graphene based quantum dots and antidots are two nanostructures of primary importance for their fund...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
Graphene quantum dots (GQDs) are nanosized fragments of graphene containing a bandgap caused by edge...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
When a Dirac electron is confined to a triangular graphene quantum dot with zigzag edges, its low-en...
We explore the effect of antidot size on electronic and magnetic properties of graphene antidot latt...
The magnetic and electronic properties of zigzag-triangular WS2 and MoS2 quantum dots are investigat...
The effects of ribbon size on the spin properties of zigzag graphene nanoribbon (ZGNR) with and with...
We study edge state magnetism in graphene nanostructures using a mean field theory of the Hubbard mo...
We investigate quantum transport properties of triangular graphene flakes with zigzag edges by using...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...