In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mobility of the charge carriers. As a result, in organic solar cells the mobility simultaneously controls both the carrier extraction and the losses via carrier recombination. The authors demonstrate that the balance between carrier losses by extraction and by recombination leads to a distinct optimum in the carrier mobility with regard to the efficiency of organic solar cells. For low mobilities recombination losses limit the performance, whereas the efficient extraction at high mobilities leads to a reduction of the open-circuit voltage. (c) 2007 American Institute of Physics
Among the parameters that characterize a solar cell and define its power-conversion efficiency, the ...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
[[abstract]]The microscopic states and performance of organic solar cell are investigated theoretica...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
The in‐depth understanding of charge carrier photogeneration and recombination mechanisms in organic...
Bimolecular recombination in organic semiconductors is known to follow the Langevin expression, i.e....
The competition between charge extraction and nongeminate recombination critically determines the cu...
In this paper, the effect of mobility and active layer thickness on the properties of bulk heterojun...
In spite of great progress in recent years, widespread application of organic photovoltaic devices r...
Among the parameters that characterize a solar cell and define its power-conversion efficiency, the ...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
[[abstract]]The microscopic states and performance of organic solar cell are investigated theoretica...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
The in‐depth understanding of charge carrier photogeneration and recombination mechanisms in organic...
Bimolecular recombination in organic semiconductors is known to follow the Langevin expression, i.e....
The competition between charge extraction and nongeminate recombination critically determines the cu...
In this paper, the effect of mobility and active layer thickness on the properties of bulk heterojun...
In spite of great progress in recent years, widespread application of organic photovoltaic devices r...
Among the parameters that characterize a solar cell and define its power-conversion efficiency, the ...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...