Understanding the photophysics of charge generation in organic semiconductors is a critical step toward the further optimization of organic solar cells. The separation of electron–hole pairs in systems with large energy offsets is relatively well-understood; however, the photophysics in blends with low driving energy remains unclear. Herein, we use the material system PffBT4T-2OD:PC71BM as an example to show that the built-in electric field plays a critical role toward long-range charge separation in high-performance devices. By using steady-state and time-resolved spectroscopic techniques, we show that in neat films an energetic barrier impedes polymer exciton dissociation, preventing charge transfer to the fullerene acceptor. In complete ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
ABSTRACT: PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5 % ef...
All-organic heterojunction solar cells now provide very high quantum efficiencies for charge generat...
The electro-optical properties of thin films of electron donor-acceptor blends of a fluorene copolym...
For efficient charge generation in organic solar cells, photogenerated excitons must migrate to a do...
PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5% efficiency). ...
Broadband transient absorption spectroscopy is combined with ultrafast carrier drift measurements to...
The physics of charge separation in organic semiconductors is a topic of ongoing research of relevan...
ABSTRACT: The energetic driving force required to drive charge separation across donor/acceptor hete...
PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5% efficiency). ...
The energetic offset between the initial photo excited state and charge-transfer (CT) state in organ...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
A comprehensive understanding of the charge generation mechanism in organic solar cells is critical ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
ABSTRACT: PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5 % ef...
All-organic heterojunction solar cells now provide very high quantum efficiencies for charge generat...
The electro-optical properties of thin films of electron donor-acceptor blends of a fluorene copolym...
For efficient charge generation in organic solar cells, photogenerated excitons must migrate to a do...
PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5% efficiency). ...
Broadband transient absorption spectroscopy is combined with ultrafast carrier drift measurements to...
The physics of charge separation in organic semiconductors is a topic of ongoing research of relevan...
ABSTRACT: The energetic driving force required to drive charge separation across donor/acceptor hete...
PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5% efficiency). ...
The energetic offset between the initial photo excited state and charge-transfer (CT) state in organ...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
A comprehensive understanding of the charge generation mechanism in organic solar cells is critical ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...