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Nanoimprint texturing of transparent flexible substrates for improved light management in thin-film solar cells

 
: Wilken, Karen; Paetzold, Ulrich W.; Meier, Matthias; Prager, Nicole; Fahland, Matthias; Finger, Friedhelm; Smirnov, Vladimir

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Physica status solidi. Rapid research letters 9 (2015), No.4, pp.215-219
ISSN: 1862-6254
ISSN: 1862-6270
Bundesministerium für Wirtschaft und Technologie BMWi
0325442D; Flexsol
English
Journal Article
Fraunhofer FEP ()
flexible substrates; solar cells; texturing light trapping; thin films

Abstract
We present a nanoimprint based approach to achieve efficient light management for solar cells on low temperature transparent polymer films. These films are particularly low-priced, though sensitive to temperature, and therefore limiting the range of deposition temperatures of subsequent solar cell layers. By using nanoimprint technology, we successfully replicated optimized light trapping textures of etched high temperature ZnO:Al on a low temperature PET film without deterioration of optical properties of the substrate. The imprint-textured PET substrates show excellent light scattering properties and lead to significantly improved incoupling and trapping of light in the solar cell, resulting in a current density of 12.9 mA/cm(2), similar to that on a glass substrate. An overall efficiency of 6.9% was achieved for a flexible thin-film silicon solar cell on low cost PET substrate.

: http://publica.fraunhofer.de/documents/N-343570.html