Wave-optical front structures on silicon and perovskite thin-film solar cells
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Elsevier
Reference95 articles.
1. Multifunctional cellulose-paper for light harvesting and smart sensing applications;Vicente;J. Mater. Chem. C.,2018
2. Optimal-enhanced solar cell ultra-thinning with broadband nanophotonic light capture;Mendes;IScience,2018
3. Design of optimized wave-optical spheroidal nanostructures for photonic-enhanced solar cells;Mendes;Nano Energy,2016
4. A statistics modeling approach for the optimization of thin film photovoltaic devices;Vicente;Sol. Energy,2017
5. Thin film silicon photovoltaic cells on paper for flexible indoor applications;Águas;Adv. Funct. Mater.,2015
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