Understanding organic semiconductor interfaces is critical to developing organic photovoltaics (OPV). OPV interfaces are disordered due to weak intermolecular interactions, resulting in diverse charge transfer micro-environments. I present experimental data isolating high-order intermolecular interactions controlling interfacial energy level alignment and describe new instrumental capabilities providing access to the local electronic and kinetic landscape at organic semiconductor interfaces. Interface formation between vanadyl naphthalocyanine (VONc) and highly ordered pyrolytic graphite (HOPG) is investigated. Ultraviolet photoemission spectroscopy (UPS) shows that the VONc binding energy (BE) decouples from the work function, shifting in ...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.In recent decade...
We investigate the evolution of the interfacial electronic structure at the interface of (sub)monola...
The use of a spectroscopy technique called pump–push–probe electro-absorption provides insight into...
The studies presented in this work are aimed towards a better understanding of the fundamental physi...
We report the evolution of the electronic structure of excited (sub)monolayer films of vanadyl napht...
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...
In this thesis, I present a comprehensive study of the interfacial electronic structure and thin fil...
The frontier orbitals of organic semiconductors at interfaces as they relate to organic electronic d...
Organic semiconductor interfaces are promising materials for use in next-generation electronic and o...
Organic semiconductor thin films are of interest to us for a variety of molecular electronic applica...
To improve the overall efficiency of an organic photovoltaic (OPV) device, the charge transfer at th...
In the present work, charge transfer in organic semiconductors is investigated by means of photoemis...
Organic electronics is a field covering all applications and devices where one or several of the act...
Molecules and atoms at material interfaces have properties that are distinct from those found in the...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.In recent decade...
We investigate the evolution of the interfacial electronic structure at the interface of (sub)monola...
The use of a spectroscopy technique called pump–push–probe electro-absorption provides insight into...
The studies presented in this work are aimed towards a better understanding of the fundamental physi...
We report the evolution of the electronic structure of excited (sub)monolayer films of vanadyl napht...
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...
In this thesis, I present a comprehensive study of the interfacial electronic structure and thin fil...
The frontier orbitals of organic semiconductors at interfaces as they relate to organic electronic d...
Organic semiconductor interfaces are promising materials for use in next-generation electronic and o...
Organic semiconductor thin films are of interest to us for a variety of molecular electronic applica...
To improve the overall efficiency of an organic photovoltaic (OPV) device, the charge transfer at th...
In the present work, charge transfer in organic semiconductors is investigated by means of photoemis...
Organic electronics is a field covering all applications and devices where one or several of the act...
Molecules and atoms at material interfaces have properties that are distinct from those found in the...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.In recent decade...
We investigate the evolution of the interfacial electronic structure at the interface of (sub)monola...
The use of a spectroscopy technique called pump–push–probe electro-absorption provides insight into...