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A Fullerene-Based Organic Exciton Blocking Layer with High Electron Conductivity
46
Citations
19
References
2013
Year
EngineeringState AbsorptionOrganic ElectronicsOrganic Solar CellC60 AbsorptionChemistryCharge TransportPhotovoltaicsFullereneCharge SeparationCharge Carrier TransportPhotochemistrySolar PowerNanotechnologyOrganic SemiconductorHigh Electron ConductivityOrganic Charge-transfer CompoundApplied PhysicsC60 Charge TransferSolar Cells
We demonstrate the concentration dependence of C60 absorption in solid solutions of C60 and bathocuprione (BCP), revealing a nonlinear decrease of the C60 charge transfer (CT) state absorption. These blends are utilized to study the photocurrent contribution of the CT in bilayer organic photovoltaics (OPVs); 1:1 blends produce 40% less photocurrent. As exciton blocking electron transporting layers, the blends achieve power conversion efficiencies of 5.3%, an increase of 10% compared to conventional buffers.
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