Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5400336 | Journal of Luminescence | 2014 | 7 Pages |
Abstract
We demonstrate concentration-dependent Förster-type energy transfer in a luminescent solar concentrator (LSC) material containing two high quantum yield laser dyes in a PMMA matrix. FRET heterotransfer is shown to be approximately 50% efficient in the regime of 2Ã10â3molal acceptor dye by weight in the host polymer. The two dyes used have been well studied for solar concentrator applications: BASF's Lumogen Red 305, and Exciton Chemical Company's DCM both demonstrate desirable stability, quantum yield, and complementary absorption spectra. We demonstrate how multiple-dye LSC devices employing FRET increase the absorption of air mass 1.5 solar irradiance without affecting the self-absorption properties of the film. Color tunability may be achieved through the addition of additional absorbers while minimizing the impact on waveguide efficiency.
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Authors
Benjamin Balaban, Sage Doshay, Melissa Osborn, Yvonne Rodriguez, Sue A. Carter,