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Proceedings Paper

Dendrimers for photon harvesting in organic and organic/inorganic hybrid solar cells
Author(s): Byeong-Kwan An; Benjamin Langley; Paul Burn; Paul Meredith
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Paper Abstract

Dendrimers are branched macromolecules in which multiple functions can be engineered into a single entity. Highly efficient dendrimer-based solution processed organic light emitting diodes have been demonstrated, but to date, there have been fewer reports of their use in organic photovoltaics. In our paper we describe a new family of dendritic light harvesting molecules based upon ruthenium-centered charge transfer complexes specifically designed for use in dye sensitized solar cells (DSSCs). These materials possess enhanced thermal and solution stability, reduced aggregation, and light harvesting efficiencies similar to the gold standard N3 ruthenium complex. We also describe a new method for measuring dye uptake in-situ and show that the adsorption kinetics of the dendritic molecules onto nanoporous titanium dioxide (the photoanode) obeys pseudo 2nd order kinetics with chemisorption being the rate determining step. This architectural approach allows simultaneous tuning of several key molecular properties for light harvesting and may point the way towards higher efficiency organic solar cell materials.

Paper Details

Date Published: 9 October 2009
PDF: 9 pages
Proc. SPIE 7416, Organic Photovoltaics X, 74160A (9 October 2009); doi: 10.1117/12.825689
Show Author Affiliations
Byeong-Kwan An, The Univ. of Queensland (Australia)
Benjamin Langley, The Univ. of Queensland (Australia)
Paul Burn, The Univ. of Queensland (Australia)
Paul Meredith, The Univ. of Queensland (Australia)


Published in SPIE Proceedings Vol. 7416:
Organic Photovoltaics X
Zakya H. Kafafi; Paul A. Lane, Editor(s)

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