Organic solar cell comprising an intermediate layer with asymmetrical transport properties
The invention relates to an organic solar cell comprising a photoactive layer consisting of two molecular components, namely an electron donator and an electrode acceptor, and comprising two electrodes provided on both sides of the photoactive layer, whereby an intermediate layer having an asymmetric conductivity is placed between at least one of the electrodes and the photoactive layer.
1 . A photovoltaic cell comprising a photoactive layer and two electrodes, characterized in that disposed between at least one of the electrodes and the photoactive layer is an intermediate layer with asymmetrical conductivity.
2 . The photovoltaic cell as in claim 1 , characterized in that disposed between each of the two electrodes and the photoactive layer is an intermediate layer with asymmetrical conductivity.
3 . The photovoltaic cell as in claim 1 , characterized in that the intermediate layer has a bandgap that is larger than or equal to the bandgap of the photoactive layer.
4 . The photovoltaic cell as in claim 1 , characterized in that the intermediate layer is semitransparent.
5 . The photovoltaic cell as in claim 1 , in which the photoactive layer comprises one region with electron donors and one region with electron acceptors, a cathode being assigned to the electron acceptor region, characterized in that the intermediate layer is disposed between the electron acceptor region and the cathode, and comprises a material that conducts current primarily via electrons.
6 . The photovoltaic cell as in claim 5 , characterized in that the electron-conducting intermediate layer comprises TiO 2 or C 60 .
7 . The photovoltaic cell as in claim 5 , characterized in that the conduction band of the electron-conducting intermediate layer is matched to the highest occupied molecular orbital of the electron acceptor.
8 . The photovoltaic cell as in claim 1 , in which the photoactive layer comprises one region with electron donors and one region with electron acceptors, an anode being assigned to the electron donor region, characterized in that the intermediate layer is disposed between the electron donor region and the anode and comprises a material that conducts current primarily via defect electrons.
9 . The photovoltaic cell as in claim 1 , characterized in that the defect-electron-conducting intermediate layer comprises PEDOT.
10 . The photovoltaic cell as in claim 8 , characterized in that the valence band of the defect-electron-conducting intermediate layer is matched to the lowest unoccupied molecular orbital of the electron donor.
11 . The photovoltaic cell as in claim 1 , characterized in that the photovoltaic cell is an organic photovoltaic cell.