Photocurrent in an organic solar cell is generated by a charge transfer reaction between electron donors and acceptors. Charge transfer is expected to proceed from thermalized states, but this picture has been challenged by recent studies that have investigated the role of hot excitons. Here we show a direct link between excess excitation energy and photocarrier mobility. Charge transfer from excited donor molecules generates hot photocarriers with excess energy coming from the offset between the lowest unoccupied molecular orbital of the donor and that of the acceptor. Hot photocarriers manifest themselves through a short-lived spike in terahertz photoconductivity that decays on a picosecond timescale as carriers thermalize. Different dyna...
Efficient organic solar cells are based on (electron) donor−acceptor heterojunctions. An optically ...
We employ the experimental technique THz Time Domain spectroscopy (THz-TDS) to study the optoelectro...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...
Time-resolved terahertz spectroscopy (TRTS) was used to explore charge generation, transfer, and the...
Organic photovoltaic (OPV) devices based on semiconducting polymers and small molecules allow for a ...
A typical signature of charge extraction in disordered organic systems is dispersive transport, whic...
Mounting evidence suggests that excess energy in charge-transfer (CT) excitonic states facilitates e...
In photovoltaic devices, the photo-generated charge carriers are typically assumed to be in thermal ...
This project investigated transient photoconductivity in organic donor-acceptor (D-A) systems, where...
Here, we investigated photocarrier generation and diffusion characteristics in molecular-scale donor...
Introduction to organic photovoltaics with more detailed outlook on efficiency and carrier dynamics ...
The ever-increasing demand for cleaner sources of energy calls for inexpensive and highly efficient ...
Understanding the photoinduced ultrafast charge transfer (CT) dynamics across the donor/acceptor int...
International audienceExciton dynamics governs energy transfer and charge generation in organic func...
The need for developing highly efficient solar cell devices have never been so pressing until recent...
Efficient organic solar cells are based on (electron) donor−acceptor heterojunctions. An optically ...
We employ the experimental technique THz Time Domain spectroscopy (THz-TDS) to study the optoelectro...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...
Time-resolved terahertz spectroscopy (TRTS) was used to explore charge generation, transfer, and the...
Organic photovoltaic (OPV) devices based on semiconducting polymers and small molecules allow for a ...
A typical signature of charge extraction in disordered organic systems is dispersive transport, whic...
Mounting evidence suggests that excess energy in charge-transfer (CT) excitonic states facilitates e...
In photovoltaic devices, the photo-generated charge carriers are typically assumed to be in thermal ...
This project investigated transient photoconductivity in organic donor-acceptor (D-A) systems, where...
Here, we investigated photocarrier generation and diffusion characteristics in molecular-scale donor...
Introduction to organic photovoltaics with more detailed outlook on efficiency and carrier dynamics ...
The ever-increasing demand for cleaner sources of energy calls for inexpensive and highly efficient ...
Understanding the photoinduced ultrafast charge transfer (CT) dynamics across the donor/acceptor int...
International audienceExciton dynamics governs energy transfer and charge generation in organic func...
The need for developing highly efficient solar cell devices have never been so pressing until recent...
Efficient organic solar cells are based on (electron) donor−acceptor heterojunctions. An optically ...
We employ the experimental technique THz Time Domain spectroscopy (THz-TDS) to study the optoelectro...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...