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Origin of the Open Circuit Voltage of Plastic Solar Cells

Advanced Functional Materials · 2001 · Vol. 11(5) · pp. 374–380
Christoph J. BrabecAntonio CravinoD MeißnerNiyazi Serdar SariçiftçiThomas FromherzMinze T. RispensLuis SánchezJan C. Hummelen

Abstract

A series of highly soluble fullerene derivatives with varying acceptor strengths (i.e., first reduction potentials) was synthesized and used as electron acceptors in plastic solar cells. These fullerene derivatives, methanofullerene [6,6]-phenyl C61-butyric acid methyl ester (PCBM), a new azafulleroid, and a ketolactam quasifullerene, show a variation of almost 200 mV in their first reduction potential. The open circuit voltage of the corresponding devices was found to correlate directly with the acceptor strength of the fullerenes, whereas it was rather insensitive to variations of the work function of the negative electrode. These observations are discussed within the concept of Fermi level pinning between fullerenes and metals via surface charges.

Fullerene Chemistry and ApplicationsGraphene research and applicationsMolecular Junctions and NanostructuresFullereneMaterials scienceOpen-circuit voltageAcceptorOrganic solar cellWork functionElectron acceptorElectrodeSolar cellVoltage
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References
Handbook of Chemistry and Physics.
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Origin of the Open Circuit Voltage of Plastic Solar Cells · Scinovex