Hybrid inorganic–organic semiconductor (HIOS) interfaces are of interest for new photovoltaic devices operating above the Shockley–Queisser limit. Predicting energy band alignment at the interfaces is crucial for their design, but represents a challenging problem due to the large scales of the system, the energy precision required and a wide range of physical phenomena that occur at the interface. To tackle this problem, many-body perturbation theory in the non-self-consistent GW approximation, orbital relaxation corrections for organic semiconductors, and line-up potential method for inorganic semiconductors which allows for tractable and accurate computing of energy band alignment in crystalline van-der-Waals hybrid inorganic–organic semi...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Hybridized molecule/metal interfaces are ubiquitous in molecular and organic devices. The energy lev...
Improving the efficiency of organic solar cells requires atomic insight into the interface electroni...
In this dissertation, I present the results of my research regarding hybrid semiconductor interfaces...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Hybrid systems of organic and inorganic semiconductors are a promising route for the development of ...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
The electronic properties of hybrid organic–inorganic semiconductor interfaces depend strongly on th...
Ultraviolet photoelectron spectroscopy has been used to determine the energy level alignment at inte...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Hybridized molecule/metal interfaces are ubiquitous in molecular and organic devices. The energy lev...
Improving the efficiency of organic solar cells requires atomic insight into the interface electroni...
In this dissertation, I present the results of my research regarding hybrid semiconductor interfaces...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
Functional hybrid interfaces between organic molecules and semiconductors are central to many emergi...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Hybrid systems of organic and inorganic semiconductors are a promising route for the development of ...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
The electronic properties of hybrid organic–inorganic semiconductor interfaces depend strongly on th...
Ultraviolet photoelectron spectroscopy has been used to determine the energy level alignment at inte...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Hybridized molecule/metal interfaces are ubiquitous in molecular and organic devices. The energy lev...
Improving the efficiency of organic solar cells requires atomic insight into the interface electroni...