First-principles calculations of structure optimization, phonon modes, and finite temperature molecular dynamics predict that silicon and germanium can have stable, two-dimensional, low-buckled, honeycomb structures. Similar to graphene, these puckered structures are ambipolar and their charge carriers can behave like a massless Dirac fermion due to their π and π* bands which are crossed linearly at the Fermi level. In addition to these fundamental properties, bare and hydrogen passivated nanoribbons of Si and Ge show remarkable electronic and magnetic properties, which are size and orientation dependent. These properties offer interesting alternatives for the engineering of diverse nanodevices. © 2009 The American Physical Society
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
This study of elastic and plastic deformation of graphene, silicene, and boron nitride (BN) honeycom...
We study characteristic electronic structures in the extended martini lattice model and propose its ...
We present a first-principles study of bare and hydrogen passivated armchair nanoribbons of the puck...
Using first-principles plane-wave calculations, we investigate two-dimensional (2D) honeycomb struct...
Using first-principles plane-wave calculations, we investigate two-dimensional (2D) honeycomb struct...
By plane-wave pseudopotential techniques we simulated structural and electronic properties of novel ...
\u3cp\u3eThe interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type elect...
Two-dimensional materials are one of the most active areas of nanomaterials research. Here we report...
We report here the structural and electronic properties of graphene and silicene (the silicon analog...
Two-dimensional materials are one of the most active areas of nanomaterials research. Here we report...
The interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type electronic ba...
Two-dimensional materials are one of the most active areas of nanomaterials research. Here we report...
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
This study of elastic and plastic deformation of graphene, silicene, and boron nitride (BN) honeycom...
We study characteristic electronic structures in the extended martini lattice model and propose its ...
We present a first-principles study of bare and hydrogen passivated armchair nanoribbons of the puck...
Using first-principles plane-wave calculations, we investigate two-dimensional (2D) honeycomb struct...
Using first-principles plane-wave calculations, we investigate two-dimensional (2D) honeycomb struct...
By plane-wave pseudopotential techniques we simulated structural and electronic properties of novel ...
\u3cp\u3eThe interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type elect...
Two-dimensional materials are one of the most active areas of nanomaterials research. Here we report...
We report here the structural and electronic properties of graphene and silicene (the silicon analog...
Two-dimensional materials are one of the most active areas of nanomaterials research. Here we report...
The interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type electronic ba...
Two-dimensional materials are one of the most active areas of nanomaterials research. Here we report...
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
The recent advances and promises in nanoscience and nanotechnology have been focused on hexagonal ma...
This study of elastic and plastic deformation of graphene, silicene, and boron nitride (BN) honeycom...
We study characteristic electronic structures in the extended martini lattice model and propose its ...