The performance of solar cells based on molecular electronic materials is limited by relatively high nonradiative voltage losses. The primary pathway for nonradiative recombination in organic donor-acceptor heterojunction devices is believed to be the decay of a charge-transfer (CT) excited state to the ground state via energy transfer to vibrational modes. Recently, nonradiative voltage losses have been related to properties of the charge-transfer state such as the Franck-Condon factor describing the overlap of the CT and ground-state vibrational states and, therefore, to the energy of the CT state. However, experimental data do not always follow the trends suggested by the simple model. Here, we extend this recombination model to include ...
The open-circuit voltage (V-oc) of polymer:fullerene bulk heterojunction solar cells is determined b...
Voltage losses limit the performance of organic solar cells, yet their origins are not fully underst...
Understanding the factors controlling radiative and non-radiative transition rates for charge transf...
The performance of solar cells based on molecular electronic materials is limited by relatively high...
The performance of solar cells based on molecular electronic materials is limited by relatively high...
Organic solar cells demonstrate external quantum efficiencies and fill factors approaching those of ...
A number of recent studies have shown that the nonradiative voltage losses in organic solar cells ca...
Open-circuit voltage (VOC) losses in organic photovoltaics (OPVs) inhibit devices from reaching VOC ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
The energetic offset between the initial photo excited state and charge-transfer (CT) state in organ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
ABSTRACT: We investigate the causes for obtaining higher open-circuit voltage in solar cells that us...
Recent advances in organic solar cells based on non-fullerene acceptors (NFAs) come with reduced non...
The involvement of charge-transfer (CT) states in the photogeneration and recombination of charge ca...
Charge-transfer state (CTS) plays a very important role in organic photovoltaic (OPV) devices. Espec...
The open-circuit voltage (V-oc) of polymer:fullerene bulk heterojunction solar cells is determined b...
Voltage losses limit the performance of organic solar cells, yet their origins are not fully underst...
Understanding the factors controlling radiative and non-radiative transition rates for charge transf...
The performance of solar cells based on molecular electronic materials is limited by relatively high...
The performance of solar cells based on molecular electronic materials is limited by relatively high...
Organic solar cells demonstrate external quantum efficiencies and fill factors approaching those of ...
A number of recent studies have shown that the nonradiative voltage losses in organic solar cells ca...
Open-circuit voltage (VOC) losses in organic photovoltaics (OPVs) inhibit devices from reaching VOC ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
The energetic offset between the initial photo excited state and charge-transfer (CT) state in organ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
ABSTRACT: We investigate the causes for obtaining higher open-circuit voltage in solar cells that us...
Recent advances in organic solar cells based on non-fullerene acceptors (NFAs) come with reduced non...
The involvement of charge-transfer (CT) states in the photogeneration and recombination of charge ca...
Charge-transfer state (CTS) plays a very important role in organic photovoltaic (OPV) devices. Espec...
The open-circuit voltage (V-oc) of polymer:fullerene bulk heterojunction solar cells is determined b...
Voltage losses limit the performance of organic solar cells, yet their origins are not fully underst...
Understanding the factors controlling radiative and non-radiative transition rates for charge transf...