Recent simulations of the efficiency of polymer/fullerene solar cells as a function of mobility predicted finite optimum mobilities due to a decrease in open circuit voltage for higher mobilities. We explain this decrease in open circuit voltage with two features of the commonly used model, namely, infinite surface recombination and an integration over a distribution of separation distances of electron and hole in a charge transfer state at the interface between donor and acceptor molecules. Especially, the assumption of a variable electron/hole pair separation at the interface has a considerable influence on the open circuit voltage
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Organic photovoltaics are under intense development and significant focus has been placed on tuning ...
State-of-the-art models used for drift-diffusion simulations of organic bulk heterojunction solar ce...
ABSTRACT: We investigate the causes for obtaining higher open-circuit voltage in solar cells that us...
This work studies the charge carrier collection efficiency in organic bulk-heterojunction solar cell...
Energetic disorder in organic semiconductors leads to strong dependence of recombination kinetics an...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
Energetic disorder in organic semiconductors leads to strong dependence of recombination kinetics an...
Achieving the highest power conversion efficiencies in bulk heterojunction organic solar cells requi...
Energy disorder reduces the achievable open-circuit voltage in organic bulk-heterojunction solar cel...
We have developed a numerical device model that consistently describes the current-voltage character...
We investigate the causes for obtaining higher open-circuit voltage in solar cells that use a fuller...
The open-circuit voltage (V-oc) of polymer:fullerene bulk heterojunction solar cells is determined b...
The basic operating mechanisms of organic bulk-heterojunction cells comprising poly(3-hexylthiophene...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Organic photovoltaics are under intense development and significant focus has been placed on tuning ...
State-of-the-art models used for drift-diffusion simulations of organic bulk heterojunction solar ce...
ABSTRACT: We investigate the causes for obtaining higher open-circuit voltage in solar cells that us...
This work studies the charge carrier collection efficiency in organic bulk-heterojunction solar cell...
Energetic disorder in organic semiconductors leads to strong dependence of recombination kinetics an...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
Energetic disorder in organic semiconductors leads to strong dependence of recombination kinetics an...
Achieving the highest power conversion efficiencies in bulk heterojunction organic solar cells requi...
Energy disorder reduces the achievable open-circuit voltage in organic bulk-heterojunction solar cel...
We have developed a numerical device model that consistently describes the current-voltage character...
We investigate the causes for obtaining higher open-circuit voltage in solar cells that use a fuller...
The open-circuit voltage (V-oc) of polymer:fullerene bulk heterojunction solar cells is determined b...
The basic operating mechanisms of organic bulk-heterojunction cells comprising poly(3-hexylthiophene...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Organic photovoltaics are under intense development and significant focus has been placed on tuning ...
State-of-the-art models used for drift-diffusion simulations of organic bulk heterojunction solar ce...