Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor-acceptor interface, leads to generation of charge carriers displaying dynamics that are indistinguishable from those generated by excitation of the conjugated polymer at higher photon energy. This indicates that excess energy liberated in the photoinduced electron transfer between polymer and fullerene is not essential for the charge carrier generation
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
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...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
\u3cp\u3eIn organic solar cells, photoexcitation of the donor or acceptor phase can result in differ...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
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...
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...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
\u3cp\u3eIn organic solar cells, photoexcitation of the donor or acceptor phase can result in differ...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
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...
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...