Bioinspired phase-separated disordered nanostructures for thin photovoltaic absorbers

The wings of the black butterfly, , are covered by micro- and nanostructured scales that harvest sunlight over a wide spectral and angular range. Considering that these properties are particularly attractive for photovoltaic applications, we analyze the contribution of these micro- and nanostructure...

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Veröffentlicht in:Science advances 2017-10, Vol.3 (10), p.e1700232-e1700232
Hauptverfasser: Siddique, Radwanul H, Donie, Yidenekachew J, Gomard, Guillaume, Yalamanchili, Sisir, Merdzhanova, Tsvetelina, Lemmer, Uli, Hölscher, Hendrik
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Sprache:eng
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Zusammenfassung:The wings of the black butterfly, , are covered by micro- and nanostructured scales that harvest sunlight over a wide spectral and angular range. Considering that these properties are particularly attractive for photovoltaic applications, we analyze the contribution of these micro- and nanostructures, focusing on the structural disorder observed in the wing scales. In addition to microspectroscopy experiments, we conduct three-dimensional optical simulations of the exact scale structure. On the basis of these results, we design nanostructured thin photovoltaic absorbers of disordered nanoholes, which combine efficient light in-coupling and light-trapping properties together with a high angular robustness. Finally, inspired by the phase separation mechanism of self-assembled biophotonic nanostructures, we fabricate these bioinspired absorbers using a scalable, self-assembly patterning technique based on the phase separation of binary polymer mixture. The nanopatterned absorbers achieve a relative integrated absorption increase of 90% at a normal incident angle of light to as high as 200% at large incident angles, demonstrating the potential of black butterfly structures for light-harvesting purposes in thin-film solar cells.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.1700232