Recent experimental discoveries of graphene-stabilized patches of two-dimensional (2D) metals have motivated also their computational studies. However, so far the studies have been restricted to ideal and infinite 2D metallic monolayers, which is insufficient because in reality the properties of such metallic patches are governed by microstructures pervaded by edges, defects, and several types of perturbations. Here we use density-functional theory to calculate edge and vacancy formation energies of hexagonal and square lattices of 45 elemental 2D metals. We find that the edge and vacancy formation energies are strongly correlated and decrease with increasing Wigner-Seitz radii, analogously to surface energies. Despite a radical reduc...
The thermodynamic aspects of various 2D materials are explored using Density Functional Theory (DFT)...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
We use density functional theory to study a free-standing 2D copper monolayer. We find that the Cu m...
Common two-dimensional (2D) materials have a layered three-dimensional (3D) structure with covalentl...
Two-dimensional (2D) materials can be used as stabilizing templates for exotic nanostructures, inclu...
The discovery of two-dimensional (2D) iron monolayer in graphene pores stimulated experimental and c...
Lattice defects are inevitably present in two-dimensional materials, with direct implications on the...
Lattice defects are inevitably present in two-dimensional materials, with direct implications on the...
Unlike covalent two-dimensional (2D) materials like graphene, 2D metals have nonlayered structures d...
Two-dimensional (2D) materials have been paid enormous attention since the first realization of grap...
2D materials has become one of the most exciting areas of research, since the report of graphene in ...
Two-dimensional (2D) elemental materials of group-IIIA, -IVA, -VA -VIA and IVB, beyond graphene, one...
Trough the following pages a comprehensive study of open structures will be shown, including mono-va...
Trough the following pages a comprehensive study of open structures will be shown, including mono-va...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
The thermodynamic aspects of various 2D materials are explored using Density Functional Theory (DFT)...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
We use density functional theory to study a free-standing 2D copper monolayer. We find that the Cu m...
Common two-dimensional (2D) materials have a layered three-dimensional (3D) structure with covalentl...
Two-dimensional (2D) materials can be used as stabilizing templates for exotic nanostructures, inclu...
The discovery of two-dimensional (2D) iron monolayer in graphene pores stimulated experimental and c...
Lattice defects are inevitably present in two-dimensional materials, with direct implications on the...
Lattice defects are inevitably present in two-dimensional materials, with direct implications on the...
Unlike covalent two-dimensional (2D) materials like graphene, 2D metals have nonlayered structures d...
Two-dimensional (2D) materials have been paid enormous attention since the first realization of grap...
2D materials has become one of the most exciting areas of research, since the report of graphene in ...
Two-dimensional (2D) elemental materials of group-IIIA, -IVA, -VA -VIA and IVB, beyond graphene, one...
Trough the following pages a comprehensive study of open structures will be shown, including mono-va...
Trough the following pages a comprehensive study of open structures will be shown, including mono-va...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
The thermodynamic aspects of various 2D materials are explored using Density Functional Theory (DFT)...
The discovery of graphene and its unprecedented properties inspired an extraordinary increase in res...
We use density functional theory to study a free-standing 2D copper monolayer. We find that the Cu m...