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Electrochemical Considerations for Determining Absolute Frontier Orbital Energy Levels of Conjugated Polymers for Solar Cell Applications

Advanced Materials · 2011 · Vol. 23(20) · pp. 2367–2371
Claudia M. CardonaWei LiAngel E. KaiferDavid StockdaleGuillermo C. Bazan

Abstract

Narrow bandgap conjugated polymers in combination with fullerene acceptors are under intense investigation in the field of organic photovoltaics (OPVs). The open circuit voltage, and thereby the power conversion efficiency, of the devices is related to the offset of the frontier orbital energy levels of the donor and acceptor components, which are widely determined by cyclic voltammetry. Inconsistencies have appeared in the use of the ferrocenium/ferrocene (Fc + /Fc) redox couple, as well as the values used for the absolute potentials of standard electrodes, which can complicate the comparison of materials properties and determination of structure/property relationships.

Organic Electronics and PhotovoltaicsConducting polymers and applicationsMolecular Junctions and NanostructuresMaterials scienceOrganic solar cellConjugated systemFerroceneAcceptorEnergy conversion efficiencyBand gapPhotovoltaicsElectrochemistryCyclic voltammetry

MeSH terms

MetallocenesFerrous CompoundsOxidation-ReductionPolymersQuantum TheorySolar EnergyFullerenesElectrochemical Techniques

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Division of Materials Research
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