Publication | Open Access
Space-Charge Limited Photocurrent
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References
2005
Year
Fundamental Electrostatic LimitEngineeringOrganic Solar CellCharge TransportPhotoelectrochemistryPhotovoltaicsFull SaturationSemiconductorsCharge SeparationElectrical EngineeringPhotochemistryPhysicsSpacecraft ChargingPhotoelectric MeasurementSpace-charge Limited PhotocurrentOrganic Charge-transfer CompoundApplied PhysicsConjugated PolymersConjugated PolymerCharge Carrier MobilityOptoelectronics
In 1971 Goodman and Rose predicted the occurrence of a fundamental electrostatic limit for the photocurrent in semiconductors at high light intensities. Blends of conjugated polymers and fullerenes are an ideal model system to observe this space-charge limit experimentally, since they combine an unbalanced charge transport, long lifetimes, high charge carrier generation efficiencies, and low mobility of the slowest charge carrier. The experimental photocurrents reveal all the characteristics of a space-charge limited photocurrent: a one-half power dependence on voltage, a three-quarter power dependence on light intensity, and a one-half power scaling of the voltage at which the photocurrent switches into full saturation with light intensity.
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