DocumentCode :
45878
Title :
Upconverter Silicon Solar Cell Devices for Efficient Utilization of Sub-Band-Gap Photons Under Concentrated Solar Radiation
Author :
Fischer, Shannon ; Ivaturi, Aruna ; Frohlich, Bernd ; Rudiger, Marc ; Richter, A. ; Kramer, Karl W. ; Richards, Bryce S. ; Goldschmidt, Jan Christoph
Author_Institution :
Fraunhofer Inst. for Solar Energy Syst., Freiburg, Germany
Volume :
4
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
183
Lastpage :
189
Abstract :
Upconversion (UC) of sub-band-gap photons has the potential to increase the efficiency of solar cells significantly. We realized an upconverter solar cell device, by attaching an upconverter layer of β-NaYF4 doped with 25% Er3+ embedded in the polymer perfluorocyclobutyl to the rear side of a bifacial silicon solar cell. We determined the external quantum efficiency of such upconverter solar cell devices under broad-band sub-band-gap excitation. Under consideration of spectral mismatch, we calculated the expected increase of the short-circuit current density due to UC under the air mass 1.5 global illumination. We determined an enhancement of 2.2 mA/cm2 for a spectral excitation band ranging from 1450 to 1600 nm and a comparatively low solar concentration of 78 suns. Subsequently, a system of concentrator lens and upconverter solar cell device was characterized with a solar simulator. We determined an increase of the short-circuit current density due to UC of sub-band-gap photons of 13.1 mA/cm2 under a concentration of 210 suns. This corresponds to a potential relative increase of the solar cell efficiency of 0.19%.
Keywords :
current density; elemental semiconductors; energy gap; erbium; filled polymers; short-circuit currents; silicon; sodium compounds; solar cells; solar energy concentrators; solar radiation; NaYF4:Er; air mass 1.5 global illumination; bifacial silicon solar cell; broad-band sub-band-gap excitation; concentrated solar radiation; concentrator lens; external quantum efficiency; polymer perfluorocyclobutyl; short-circuit current density; solar simulator; spectral excitation band; spectral mismatch; sub-band-gap photon upconversion; upconverter silicon solar cell devices; wavelength 1450 nm to 1600 nm; Broadband communication; Laser excitation; Lenses; Photonics; Photovoltaic cells; Short-circuit currents; Silicon; Optical frequency conversion; photovoltaic cells; silicon; spectral conversion; upconversion (UC);
fLanguage :
English
Journal_Title :
Photovoltaics, IEEE Journal of
Publisher :
ieee
ISSN :
2156-3381
Type :
jour
DOI :
10.1109/JPHOTOV.2013.2282744
Filename :
6626629
Link To Document :
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