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Light intensity dependence of open-circuit voltage of polymer:fullerene solar cells

Applied Physics Letters · 2005 · Vol. 86(12)
L. Jan Anton KosterV.D. MihailetchiRobert RamakerPaul W. M. Blom

Abstract

The open-circuit voltage Voc of polymer:fullerene bulk heterojunction solar cells is investigated as a function of light intensity for different temperatures. Devices consisted of a blend of a poly(p-phenylene vinylene) derivative as the hole conductor and 6,6-phenyl C61-butyric acid methyl ester as the electron conductor. The observed photogenerated current and Voc are at variance with classical p–n junction-based models. The influence of light intensity and recombination strength on Voc is consistently explained by a model based on the notion that the quasi-Fermi levels are constant throughout the device, including both drift and diffusion of charge carriers.

Organic Electronics and PhotovoltaicsConducting polymers and applicationsCarbon Nanotubes in CompositesFullereneMaterials scienceLight intensityOpen-circuit voltagePolymer solar cellPolymerDiffusionCharge carrierOptoelectronicsVoltage
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References
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Advanced Functional Materials · 2001 · 3,763 citations
Origin of the Open Circuit Voltage of Plastic Solar Cells
Advanced Functional Materials · 2001 · 1,793 citations
2.5% efficient organic plastic solar cells
Applied Physics Letters · 2001 · 2,602 citations
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