Electronic equilibration at the metal–organic interface, leading to equalization of the Fermi levels, is a key process in organic optoelectronic devices. How the energy levels are set across the interface determines carrier extraction at the contact and also limits the achievable open-circuit voltage under illumination. Here, we report an extensive investigation of the cathode energy equilibration of organic bulk-heterojunction solar cells. We show that the potential to balance the mismatch between the cathode metal and the organic layer Fermi levels is divided into two contributions: spatially extended band bending in the organic bulk and voltage drop at the interface dipole layer caused by a net charge transfer. We scan the operation of t...
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...
The interpretation of voltage, photovoltage, and photocurrent in polymer/fullerene bulk heterojuncti...
Electronic equilibration at the metal–organic interface, leading to equalization of the Fermi levels...
Electronic equilibration at the metal–organic interface, leading to equalization of the Fermi levels...
Energy level alignment (ELA) at donor-acceptor heterojunctions is of vital importance yet largely un...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Thesis (Ph.D.)--University of Washington, 2013We have designed and implemented several organic photo...
n organic photovoltaic devices, outer interface structures play a significant role in establishing o...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
In spite of the many advances that have been made in recent years [1], the energy level alignment at...
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...
The interpretation of voltage, photovoltage, and photocurrent in polymer/fullerene bulk heterojuncti...
Electronic equilibration at the metal–organic interface, leading to equalization of the Fermi levels...
Electronic equilibration at the metal–organic interface, leading to equalization of the Fermi levels...
Energy level alignment (ELA) at donor-acceptor heterojunctions is of vital importance yet largely un...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Thesis (Ph.D.)--University of Washington, 2013We have designed and implemented several organic photo...
n organic photovoltaic devices, outer interface structures play a significant role in establishing o...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
This article reports on the electronic structure at interfaces found in organic semiconductor device...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
In spite of the many advances that have been made in recent years [1], the energy level alignment at...
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...
The interpretation of voltage, photovoltage, and photocurrent in polymer/fullerene bulk heterojuncti...