The electro-optical properties of thin films of electron donor-acceptor blends of a fluorene copolymer (PF10TBT) and a fullerene derivative (PCBM) were studied. Transmission electron microscopy shows that in these films nanocrystalline PCBM clusters are formed at high PCBM content. For all concentrations, a charge transfer (CT) transition is observed with absorption spectroscopy, photoluminescence, and electroluminescence. The CT emission is used as a probe to investigate the dissociation of CT excited states at the donor-acceptor interface in photovoltaic devices, as a function of an applied external electric field and PCBM concentration. We find that the maximum of the CT emission shifts to lower energy and decreases in intensity with hig...
ABSTRACT: We reveal some of the key mechanisms during charge generation in polymer:fullerene blends ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
ABSTRACT: PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5 % ef...
The electro-optical properties of thin films of electron donor-acceptor blends of a fluorene copolym...
The presence of charge transfer states generated by the interaction between the fullerene acceptor P...
In organic solar cells, understanding of interfacial processes and energy losses governing device pe...
The photophysical properties of blends of fluorene copolymer and the fullerene derivative PCBM are a...
The photophysical properties of blends of fluorene copolymer and the fullerene derivative PCBM are a...
Polymer photovoltaic cells currently achieve power conversion efficiencies (PCE) above 10% on lab sc...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
Understanding the photophysics of charge generation in organic semiconductors is a critical step tow...
Polymer-fullerene blend films are of increasing interest in the field of organic solar cells. This t...
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 reveal some of the key mechanisms during charge generation in polymer:fullerene blends ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
ABSTRACT: PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5 % ef...
The electro-optical properties of thin films of electron donor-acceptor blends of a fluorene copolym...
The presence of charge transfer states generated by the interaction between the fullerene acceptor P...
In organic solar cells, understanding of interfacial processes and energy losses governing device pe...
The photophysical properties of blends of fluorene copolymer and the fullerene derivative PCBM are a...
The photophysical properties of blends of fluorene copolymer and the fullerene derivative PCBM are a...
Polymer photovoltaic cells currently achieve power conversion efficiencies (PCE) above 10% on lab sc...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
Understanding the photophysics of charge generation in organic semiconductors is a critical step tow...
Polymer-fullerene blend films are of increasing interest in the field of organic solar cells. This t...
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 reveal some of the key mechanisms during charge generation in polymer:fullerene blends ...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
ABSTRACT: PBDTTPD is one of the best conjugated polymers for solar cell applications (up to 8.5 % ef...