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Article
Nanocrystals for Luminescent Solar Concentrators
Nano Letters (2015)
  • Stephen R. McDowall, Western Washington University
  • Liam R Bradshaw, Western Washington University
  • Kathryn E Knowles, University of Washington
  • Daniel R. Gamelin, University of Washington
Abstract
Luminescent solar concentrators (LSCs) harvest sunlight over large areas and concentrate this energy onto photovoltaics or for other uses by transporting photons through macroscopic waveguides. Although attractive for lowering solar energy costs, LSCs remain severely limited by luminophore reabsorption losses. Here, we report a quantitative comparison of four types of nanocrystal (NC) phosphors recently proposed to minimize reabsorption in large-scale LSCs: two nanocrystal heterostructures and two doped nanocrystals. Experimental and numerical analyses both show that even the small core absorption of the leading NC heterostructures causes major reabsorption losses at relatively short transport lengths. Doped NCs outperform the heterostructures substantially in this critical property. A new LSC phosphor is introduced, nanocrystalline Cd1−xCuxSe, that outperforms all other leading NCs by a significant margin in both small- and large-scale LSCs under full-spectrum conditions.
Disciplines
Publication Date
Winter January 13, 2015
DOI
10.1021/nl504510t
Citation Information
Stephen R. McDowall, Liam R Bradshaw, Kathryn E Knowles and Daniel R. Gamelin. "Nanocrystals for Luminescent Solar Concentrators" Nano Letters Vol. 15 (2015) p. 1315 - 1323
Available at: http://works.bepress.com/stephen_mcdowall/10/