Low charge carrier mobilities as often observed for photoactive materials of organic solar cells have significant impact on their performance. They cause accumulation of charge carriers which can be described quantitatively by a nonohmic transport resistance in the framework of an analytical model. Further addressed in this work is surface recombination stemming from insufficient electrode selectivity which is another factor limiting the performance of organic solar cells
The competition between charge extraction and nongeminate recombination critically determines the cu...
The competition between charge extraction and nongeminate recombination critically determines the cu...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...
The selectivity of electrodes of solar cells is a critical factor that can limit the overall efficie...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
This work elucidates the impact of charge transport on the photovoltaic properties of organic solar ...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
A key challenge for researchers in the field of organic solar cells (OSCs) is to develop a physical ...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...
[[abstract]]The microscopic states and performance of organic solar cell are investigated theoretica...
The collection of charge carriers is a fundamental step in the photovoltaic conversion process. In d...
The competition between charge extraction and nongeminate recombination critically determines the cu...
The competition between charge extraction and nongeminate recombination critically determines the cu...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...
The selectivity of electrodes of solar cells is a critical factor that can limit the overall efficie...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
This work elucidates the impact of charge transport on the photovoltaic properties of organic solar ...
Photovoltaic performance in relation to charge transport is studied in efficient (7.6%) organic sola...
A key challenge for researchers in the field of organic solar cells (OSCs) is to develop a physical ...
In organic semiconductors the recombination mechanism is of the Langevin type, controlled by the mob...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...
[[abstract]]The microscopic states and performance of organic solar cell are investigated theoretica...
The collection of charge carriers is a fundamental step in the photovoltaic conversion process. In d...
The competition between charge extraction and nongeminate recombination critically determines the cu...
The competition between charge extraction and nongeminate recombination critically determines the cu...
Organic semiconductors typically possess low charge carrier mobilities and Langevin-type recombinati...