Upconverter solar cells: materials and applications

Publication date

2011

Authors

de Wild, J.
Meijerink, A.ISNI 000000039216731X
Rath, J.K.ISNI 0000000350358433
van Sark, W. G.J.H.M.ORCID 0000-0002-4738-1088ISNI 0000000397039608
Schropp, R. E.I.ISNI 000000008094399X

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Document Type

Article
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Abstract

Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are responsible for the major part of the efficiency losses in solar cells. Both upconversion and downconversion materials are presently explored. In an upconversion process, photons with an energy lower than the band gap of the solar cell are converted to higher energy photons. These higher photons are directed back to the solar cell and absorbed, thus increasing the efficiency. Different types of upconverter materials are investigated, based on luminescent ions or organic molecules. Proof of principle experiments with lanthanide ion based upconverters have indicated that the benefit of an upconversion layer is limited by the high light intensities needed to reach high upconversion quantum efficiencies. To address this limitation, upconverter materials may be combined with quantum dots or plasmonic particles to enhance the upconversion efficiency and improve the feasibility of applying upconverters in commercial solar cells.

Keywords

Taverne

Citation

de Wild, J, Meijerink, A, Rath, J K, van Sark, W G J H M & Schropp, R E I 2011, 'Upconverter solar cells: materials and applications', Energy and Environmental Science, vol. 4, pp. 4835-4848. https://doi.org/10.1039/C1EE01659H