First principles calculations were performed to study the interface electronic structure and the Schottky barrier heights (SBHs) of ZnO???metal interfaces. Different kinds of metals were considered with different chemistries on the polar (0 0 0 1) and (0 0 0 ¯1) ZnO surfaces. The projection of the density of states on the atomic orbitals of the interface atoms reveals that two kinds of interface electronic states appear: states due to the chemical bonding which appear at well defined energies and conventional metal-induced gap states associated with a smooth density of states in the bulk ZnO band gap region. The relative weight and distribution of the two classes of states depend on both the ZnO substrate termination and on the metal speci...
A first principles density function investigation of the structural, electrical and optical properti...
We report on density functional theory investigations of the electronic properties of monofunctional...
This paper presents in-depth analysis of I-V-T characteristics of Au/ZnO nanorods Schottky diodes. T...
First principles calculations were performed to study the interface electronic structure and the Sch...
The Schottky barrier heights (SBHs) of various metals on ZnO are investigated by first-principles ca...
The Schottky barrier heights (SBHs) of defect-free interfaces of ZnO, CdO, MgO, and SrO with various...
A combination of depth-resolved electronic and structural techniques reveals that native point defec...
Using an ab initio total energy approach, we study the electronic structure of metal/MgO(100) interf...
The authors used depth-resolved cathodoluminescence spectroscopy and current-voltage measurements to...
In order to answer the question of whether Schottky barriers on polar ZnO surfaces are different at ...
By using a first principles approach based on Density Functional Theory, we present a study of the m...
The description of the electronic structure of an interface between two materials is one of the main...
The authors fabricated diodes of Au, Al, Ni, Pt, Pd, Mo, Ta, and Ir on single crystal ZnO(0001) surf...
A first principles density function investigation of the structural, electrical and optical properti...
We report on density functional theory investigations of the electronic properties of monofunctional...
This paper presents in-depth analysis of I-V-T characteristics of Au/ZnO nanorods Schottky diodes. T...
First principles calculations were performed to study the interface electronic structure and the Sch...
The Schottky barrier heights (SBHs) of various metals on ZnO are investigated by first-principles ca...
The Schottky barrier heights (SBHs) of defect-free interfaces of ZnO, CdO, MgO, and SrO with various...
A combination of depth-resolved electronic and structural techniques reveals that native point defec...
Using an ab initio total energy approach, we study the electronic structure of metal/MgO(100) interf...
The authors used depth-resolved cathodoluminescence spectroscopy and current-voltage measurements to...
In order to answer the question of whether Schottky barriers on polar ZnO surfaces are different at ...
By using a first principles approach based on Density Functional Theory, we present a study of the m...
The description of the electronic structure of an interface between two materials is one of the main...
The authors fabricated diodes of Au, Al, Ni, Pt, Pd, Mo, Ta, and Ir on single crystal ZnO(0001) surf...
A first principles density function investigation of the structural, electrical and optical properti...
We report on density functional theory investigations of the electronic properties of monofunctional...
This paper presents in-depth analysis of I-V-T characteristics of Au/ZnO nanorods Schottky diodes. T...