In this study, we demonstrate that remarkably reduced open-circuit voltage in highly efficient organic solar cells (OSCs) from a blend of phenyl-C<sub>61</sub>-butyric acid methyl ester and a recently developed conjugated small molecule (DPPEZnP-THD) upon solvent vapor annealing (SVA) is due to two independent sources: increased radiative recombination and increased nonradiative recombination. Through the measurements of electroluminescence due to the emission of the charge-transfer state and photovoltaic external quantum efficiency measurement, we can quantify that the open-circuit voltage losses in a device with SVA due to the radiative recombination and nonradiative recombination are 0.23 and 0.31 V, respectively, which are 0.04 and 0.07...
Thesis (Ph.D.)--University of Washington, 2021To achieve net zero carbon emission required for a sus...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
We analyze the voltage losses at open circuit in solution-processed, small-molecule:fullerene ble...
We analyze the voltage losses at open circuit in solution-processed, small-molecule:fullerene blend ...
The performance of solar cells based on molecular electronic materials is limited by relatively low ...
The performance of solar cells based on molecular electronic materials is limited by relatively low ...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
In this study, polymer solar cells employing poly(3-hexylthiophene) (P3HT) as a donor and fullerene...
Organic semiconductors offer significant advantages as photoactive materials for solar energy conver...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
Power conversion efficiency of nonfullerene organic solar cells have now increased beyond the record...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
[EN] The physical origin of the open-circuit voltage in bulk heterojunction solar cells is still n...
Thesis (Ph.D.)--University of Washington, 2021To achieve net zero carbon emission required for a sus...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
We analyze the voltage losses at open circuit in solution-processed, small-molecule:fullerene ble...
We analyze the voltage losses at open circuit in solution-processed, small-molecule:fullerene blend ...
The performance of solar cells based on molecular electronic materials is limited by relatively low ...
The performance of solar cells based on molecular electronic materials is limited by relatively low ...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
In this study, polymer solar cells employing poly(3-hexylthiophene) (P3HT) as a donor and fullerene...
Organic semiconductors offer significant advantages as photoactive materials for solar energy conver...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
Power conversion efficiency of nonfullerene organic solar cells have now increased beyond the record...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
[EN] The physical origin of the open-circuit voltage in bulk heterojunction solar cells is still n...
Thesis (Ph.D.)--University of Washington, 2021To achieve net zero carbon emission required for a sus...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...