| Literature DB >> 26283254 |
L Mattias Andersson1,2, Armantas Melianas2, Yingyot Infahasaeng1, Zheng Tang2, Arkady Yartsev1, Olle Inganäs2, Villy Sundström1.
Abstract
Recombination in the well-performing bulk heterojunction solar cell blend between the conjugated polymer TQ-1 and the substituted fullerene PCBM has been investigated with pump-probe transient absorption and charge extraction of photogenerated carriers (photo-CELIV). Both methods are shown to generate identical and overlapping data under appropriate experimental conditions. The dominant type of recombination is bimolecular with a rate constant of 7 × 10(-12) cm(-3) s(-1). This recombination rate is shown to be fully consistent with solar cell performance. Deviations from an ideal bimolecular recombination process, in this material system only observable at high pump fluences, are explained with a time-dependent charge-carrier mobility, and the implications of such a behavior for device development are discussed.Entities:
Keywords: bulk heterojunction solar cell; conjugated polymer; fullerene; recombination
Year: 2013 PMID: 26283254 DOI: 10.1021/jz4009745
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475