AbstractZnO nanowires with different sizes and geometrical shapes have been studied by means of density functional theory (DFT) calculations. Atomic relaxation, energetic stability, and electronic properties of these nanostructures show a particular dependence on the shape of the nanowires. Our results indicate that the hexagonal shape nanostructures are more favorable than the triangular one due to lower total surface energy, whereas lattice relaxation and surface states appear to be more pronounced in the case of triangular nanowires
The enhancement of performance for next-generation optoelectronic devices is determined by how much ...
ABSTRACT Electromechanical and photonic properties of semiconducting nanowires depend on their strai...
Current-voltage I-V characteristics of different ZnO nanostructures were studied using a combined ...
The geometric, energetic, electronic structures and optical properties of ZnO nanowires (NWs) with h...
We present an analysis of the structural, electronic, and magnetic properties of nitrogen-doped ZnO ...
Although zinc oxide (ZnO) is a widely studied nanomaterial and a useful photocatalyst, the structure...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
The size dependence of atomic relaxations, formation energies, and electronic structures of hexagona...
<p></p><p>ABSTRACT This Zinc oxide (ZnO) is widely used in different electronic devices due to its t...
We present a Density Functional Based Tight Binding study on the crystallography and electronic stru...
We report on density functional theory investigations of the electronic properties of monofunctional...
This paper presents first-principles calculations for ultrasmall ZnO one-dimensional nanostructures....
This paper presents first-principles calculations for ultrasmall ZnO one-dimensional nanostructures....
This paper presents first-principles calculations for ultrasmall ZnO one-dimensional nanostructures....
The enhancement of performance for next-generation optoelectronic devices is determined by how much ...
ABSTRACT Electromechanical and photonic properties of semiconducting nanowires depend on their strai...
Current-voltage I-V characteristics of different ZnO nanostructures were studied using a combined ...
The geometric, energetic, electronic structures and optical properties of ZnO nanowires (NWs) with h...
We present an analysis of the structural, electronic, and magnetic properties of nitrogen-doped ZnO ...
Although zinc oxide (ZnO) is a widely studied nanomaterial and a useful photocatalyst, the structure...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
The size dependence of atomic relaxations, formation energies, and electronic structures of hexagona...
<p></p><p>ABSTRACT This Zinc oxide (ZnO) is widely used in different electronic devices due to its t...
We present a Density Functional Based Tight Binding study on the crystallography and electronic stru...
We report on density functional theory investigations of the electronic properties of monofunctional...
This paper presents first-principles calculations for ultrasmall ZnO one-dimensional nanostructures....
This paper presents first-principles calculations for ultrasmall ZnO one-dimensional nanostructures....
This paper presents first-principles calculations for ultrasmall ZnO one-dimensional nanostructures....
The enhancement of performance for next-generation optoelectronic devices is determined by how much ...
ABSTRACT Electromechanical and photonic properties of semiconducting nanowires depend on their strai...
Current-voltage I-V characteristics of different ZnO nanostructures were studied using a combined ...