Bimolecular recombination in organic semiconductors is known to follow the Langevin expression, i.e., the rate of recombination depends on the sum of the mobilities of both carriers. We show that this does not hold for polymer/fullerene bulk heterojunction solar cells. The voltage dependence of the photocurrent reveals that the recombination rate in these blends is determined by the slowest charge carrier only, as a consequence of the confinement of both types of carriers to two different phases.(c) 2006 American Institute of Physics
ABSTRACT: Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar ce...
Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar cells exhibi...
Bimolecular recombination in bulk heterojunction organic solar cells is the process by which nongemi...
Bimolecular recombination in organic semiconductors is known to follow the Langevin expression, i.e....
Recombination in the well-performing bulk heterojunction solar cell blend between the conjugated pol...
Bimolecular charge carrier recombination has been clarified in bulk-heterojunction solar cells based...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
We present a new experimental technique that affords direct quantification of the fraction of charge...
We present a new experimental technique that affords direct quantification of the fraction of charge...
This thesis is concerned with quantification of non-geminate recombination losses in organic bulk h...
Solar cells based on polymer–fullerene blends are amongst the most efficient organic photovoltaic de...
Charge carrier recombination is studied in operational organic solar cells made from the polymer:ful...
Recombination in the well-performing bulk heterojunction solar cell blend between the conjugated pol...
In organic bulk heterojunction solar cells, a deviation of the ideality factor of the dark current f...
In organic bulk heterojunction solar cells, a deviation of the ideality factor of the dark current f...
ABSTRACT: Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar ce...
Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar cells exhibi...
Bimolecular recombination in bulk heterojunction organic solar cells is the process by which nongemi...
Bimolecular recombination in organic semiconductors is known to follow the Langevin expression, i.e....
Recombination in the well-performing bulk heterojunction solar cell blend between the conjugated pol...
Bimolecular charge carrier recombination has been clarified in bulk-heterojunction solar cells based...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
We present a new experimental technique that affords direct quantification of the fraction of charge...
We present a new experimental technique that affords direct quantification of the fraction of charge...
This thesis is concerned with quantification of non-geminate recombination losses in organic bulk h...
Solar cells based on polymer–fullerene blends are amongst the most efficient organic photovoltaic de...
Charge carrier recombination is studied in operational organic solar cells made from the polymer:ful...
Recombination in the well-performing bulk heterojunction solar cell blend between the conjugated pol...
In organic bulk heterojunction solar cells, a deviation of the ideality factor of the dark current f...
In organic bulk heterojunction solar cells, a deviation of the ideality factor of the dark current f...
ABSTRACT: Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar ce...
Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar cells exhibi...
Bimolecular recombination in bulk heterojunction organic solar cells is the process by which nongemi...