Hybrid systems of organic and inorganic semiconductors are a promising route for the development of novel opto-electronic and light-harvesting devices. A key ingredient for achieving a superior functionality by means of a hybrid system is the right relative position of energy levels at the interfaces of the two material classes. In this Perspective , we address the sensitivity of the potential energy landscape at various ZnO surfaces, a key ingredient for interfacial energy level alignment, by combining one- and two-photon photoelectron spectroscopy with density-functional theory calculations (DFT). We show that even very large work function changes (>> 2.5 eV) do not necessarily have to be accompanied by surface band bending in ZnO. Band b...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
Hybrid inorganic–organic semiconductor (HIOS) interfaces are of interest for new photovoltaic device...
Hybrid systems of organic and inorganic semiconductors are a promising route for the development of ...
We show that the work function (Φ) of ZnO can be increased by up to 2.8 eV by depositing the molecul...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
*S Supporting Information ABSTRACT: Using density functional theory in combination with model potent...
*S Supporting Information ABSTRACT: Using density functional theory in combination with model potent...
The band alignment at semiconductor interfaces can be theoretically computed using periodic slab mod...
In this dissertation, I present the results of my research regarding hybrid semiconductor interfaces...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
We employ hybrid density functional calculations to analyze the structure and stability of the (101¯...
We employ hybrid density functional calculations to analyze the structure and stability of the (101¯...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
Hybrid inorganic–organic semiconductor (HIOS) interfaces are of interest for new photovoltaic device...
Hybrid systems of organic and inorganic semiconductors are a promising route for the development of ...
We show that the work function (Φ) of ZnO can be increased by up to 2.8 eV by depositing the molecul...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
*S Supporting Information ABSTRACT: Using density functional theory in combination with model potent...
*S Supporting Information ABSTRACT: Using density functional theory in combination with model potent...
The band alignment at semiconductor interfaces can be theoretically computed using periodic slab mod...
In this dissertation, I present the results of my research regarding hybrid semiconductor interfaces...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
We employ hybrid density functional calculations to analyze the structure and stability of the (101¯...
We employ hybrid density functional calculations to analyze the structure and stability of the (101¯...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
Using density functional theory in combination with model potential molecular dynamics, we study hyb...
Hybrid inorganic–organic semiconductor (HIOS) interfaces are of interest for new photovoltaic device...