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A nonconjugated bridge in dimer-sensitized solar cells retards charge recombination without decreasing charge injection efficiency

Authors :
Sunahara, Kenji
Griffith, Matthew J
Uchiyama, Takayuki
Wagner, Pawel
Officer, David L
Wallace, Gordon G
Mozer, Attila J
Mori, Shogo
Sunahara, Kenji
Griffith, Matthew J
Uchiyama, Takayuki
Wagner, Pawel
Officer, David L
Wallace, Gordon G
Mozer, Attila J
Mori, Shogo
Source :
Faculty of Engineering and Information Sciences - Papers: Part A
Publication Year :
2013

Abstract

Dye sensitized solar cells (DSSCs) employing a dimer porphyrin, which was synthesised with two porphyrin units connected without conjugation, have shown that both porphyrin components can contribute to photocurrent generation, that is, more than 50 % internal quantum efficiency. In addition, the open-circuit voltage (Voc) of the DSSCs was higher than that of DSSCs using monomer porphyrins. In this paper, we first optimized cell structure and fabrication conditions. We obtained more than 80% incident photon to current conversion efficiency from the dimer porphyrin sensitized DSSCs and higher Voc and energy conversion efficiency than monomer porphyrin sensitized solar cells. To examine the origin of the higher Voc, we measured electron lifetime in the DSSCs with various conditions, and found that the dimer system increased the electron lifetime by improving the steric blocking effect of the dye layer, whilst the lack of a conjugated linker prevents an increase in the attractive force between conjugated sensitizers and the acceptor species in the electrolyte. The results support a hypothesis; dispersion force is one of the factors influencing the electron lifetime in DSSCs.

Details

Database :
OAIster
Journal :
Faculty of Engineering and Information Sciences - Papers: Part A
Notes :
application/pdf
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn964022757
Document Type :
Electronic Resource