DocumentCode :
110132
Title :
2-D Periodic and Random-on-Periodic Front Textures for Tandem Thin-Film Silicon Solar Cells
Author :
Moulin, Emmanuel ; Steltenpool, Mark ; Boccard, Mathieu ; Garcia, Luis ; Bugnon, Gregory ; Stuckelberger, Michael ; Feuser, Elmar ; Niesen, Bjoern ; van Erven, Rob ; Schuttauf, Jan-Willem ; Haug, Franz-Josef ; Ballif, Christophe
Author_Institution :
Photovoltaics & Thin-Film Electron. Lab., Ecole Polytech. Fed. de Lausanne, Neuchatel, Switzerland
Volume :
4
Issue :
5
fYear :
2014
fDate :
Sept. 2014
Firstpage :
1177
Lastpage :
1184
Abstract :
We evaluate the performance of thin-film silicon micromorph tandem solar cells deposited on transparent superstrates with embossed micrometer-scale 2-D gratings. Once coated with a thin conductive layer of hydrogenated indium oxide, the textured superstrates can be used as 2-D periodic single-texture front electrodes. Combining these almost loss-free front electrodes with a highly transparent, random self-textured zinc oxide layer (with a thickness ≤ 1 μm) deposited by low-pressure chemical vapor deposition (LPCVD), we obtain double-texture transparent front electrodes. The potential of both single- and double-texture front electrodes is estimated by varying the illumination spectrum of the solar simulator, thereby assessing the maximum efficiency of the tandem cells under optimal current-matching conditions. Our results demonstrate the complementary roles of the 2-D gratings and the LPCVD-ZnO layers in double textures: Cell efficiencies as high as with our state-of-the-art 2.3-μm-thick LPCVD-ZnO front electrode are obtained with significantly reduced ZnO layer thicknesses. Additionally, we show that equivalent efficiencies are also within reach with 2-D periodic single textures if the proper cell configuration is applied.
Keywords :
II-VI semiconductors; chemical vapour deposition; elemental semiconductors; hydrogen; indium compounds; semiconductor growth; semiconductor thin films; silicon; solar cells; texture; wide band gap semiconductors; zinc compounds; 2-D gratings; 2-D periodic front textures; LPCVD; Si-In2O3:H-ZnO; cell efficiency; current-matching conditions; double-texture transparent front electrodes; embossed micrometer-scale 2-D gratings; hydrogenated indium oxide; illumination spectrum; loss-free front electrodes; low-pressure chemical vapor deposition; random self-textured zinc oxide layer; random-on-periodic front textures; solar simulator; tandem thin-film silicon solar cells; thin conductive layer; transparent superstrates; Current measurement; Electrodes; Gratings; Photoconductivity; Photovoltaic cells; Silicon; Zinc oxide; Double texture; light trapping; nanoimprinting; thin-film silicon solar cells;
fLanguage :
English
Journal_Title :
Photovoltaics, IEEE Journal of
Publisher :
ieee
ISSN :
2156-3381
Type :
jour
DOI :
10.1109/JPHOTOV.2014.2333883
Filename :
6866120
Link To Document :
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