Using the tight-binding approximation we calculated the diamagnetic susceptibility of graphene quantum dots (GQDs) of different geometrical shapes and characteristic sizes of 2–10 nm, when the magnetic properties are governed by the electron edge states. Two types of edge states can be discerned: the zero-energy states (ZESs), located exactly at the zero-energy Dirac point, and the dispersed edge states (DESs), with the energy close but not exactly equal to zero. DESs are responsible for a temperature-independent diamagnetic response, while ZESs provide a temperature-dependent spin paramagnetism. Hexagonal, circular, and randomly shaped GQDs contain mainly DESs, and, as a result, they are diamagnetic. The edge states of the triangular GQDs ...
We study the magnetic properties of nanometer-sized graphene structures with triangular and hexagona...
Experimental challenges in identifying various types of magnetic ordering in graphene quantum dots (...
In this paper, we clarified a robust mechanism of magnetism generated by excess electrons captured b...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and br...
We present the results of ab initio calculations of the effect of reconstruction and passivation of ...
The magnetic field dependence of energy levels in gapped single- and bilayer graphene quantum dots (...
We study the temperature dependent magnetic susceptibility of a strained graphene quantum dot by us...
We present a theory of electronic properties of gated triangular graphene quantum dots with zigzag e...
We investigate the effects of wedge disclination on charge carriers in circular graphene quantum dot...
When a Dirac electron is confined to a triangular graphene quantum dot with zigzag edges, its low-en...
We consider the orbital magnetic properties of noninteracting charge carriers in graphene-based nano...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
We study edge state magnetism in graphene nanostructures using a mean field theory of the Hubbard mo...
The magnetic and electronic properties of zigzag-triangular WS2 and MoS2 quantum dots are investigat...
We study the magnetic properties of nanometer-sized graphene structures with triangular and hexagona...
Experimental challenges in identifying various types of magnetic ordering in graphene quantum dots (...
In this paper, we clarified a robust mechanism of magnetism generated by excess electrons captured b...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and br...
We present the results of ab initio calculations of the effect of reconstruction and passivation of ...
The magnetic field dependence of energy levels in gapped single- and bilayer graphene quantum dots (...
We study the temperature dependent magnetic susceptibility of a strained graphene quantum dot by us...
We present a theory of electronic properties of gated triangular graphene quantum dots with zigzag e...
We investigate the effects of wedge disclination on charge carriers in circular graphene quantum dot...
When a Dirac electron is confined to a triangular graphene quantum dot with zigzag edges, its low-en...
We consider the orbital magnetic properties of noninteracting charge carriers in graphene-based nano...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
We study edge state magnetism in graphene nanostructures using a mean field theory of the Hubbard mo...
The magnetic and electronic properties of zigzag-triangular WS2 and MoS2 quantum dots are investigat...
We study the magnetic properties of nanometer-sized graphene structures with triangular and hexagona...
Experimental challenges in identifying various types of magnetic ordering in graphene quantum dots (...
In this paper, we clarified a robust mechanism of magnetism generated by excess electrons captured b...