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Article(4)
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Progress in Photovoltaics: Research and Applications(3)
Solar Energy Materials and Solar Cells(1)
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scopus(4)
Doped hydrogenated nanocrystalline silicon oxide layers for high-efficiency c-Si heterojunction solar cells
ArticleAbstract: Hydrogenated nanocrystalline silicon oxide (nc-SiOx:H) layers exhibit promising optoelectrical propePalabras claves:carrier-selective-contacts (CSCs), Hydrogenated nanocrystalline silicon oxide (nc-SiO :H) x, interface treatments, optoelectrical properties, Silicon heterojunction (SHJ)Autores:Han C., Isabella O., Mazzarella L., Paul Procel, Weeber A., Yang G., Zeman M., Zhao Y.Fuentes:scopusEffects of (i)a-Si:H deposition temperature on high-efficiency silicon heterojunction solar cells
ArticleAbstract: Excellent surface passivation induced by (i)a-Si:H is critical to achieve high-efficiency silicon hePalabras claves:FTIR, intrinsic amorphous silicon, Passivation, silicon heterojunction solar cellsAutores:Cao L., Han C., Isabella O., Mazzarella L., Paul Procel, Smets A.H.M., Weeber A., Yang G., Yao Z., Zeman M., Zhao Y.Fuentes:scopusHigh-efficiency black IBC c-Si solar cells with poly-Si as carrier-selective passivating contacts
ArticleAbstract: In this work, we present the application of poly-Si carrier-selective passivating contacts (CSPCs) aPalabras claves:Carrier selective passivating contact, IBC c-Si solar cells, Light in-coupling, Poly-siliconAutores:Guo P., Isabella O., Limodio G., Paul Procel, Weeber A., Yang G., Zeman M.Fuentes:scopusUltra-thin electron collectors based on nc-Si:H for high-efficiency silicon heterojunction solar cells
ArticleAbstract: Low parasitic absorption and high conductivity enable (n)-type hydrogenated nanocrystalline siliconPalabras claves:(n)-type window layers, hydrogenated nanocrystalline silicon, hydrogenated nanocrystalline silicon oxide, opto-electrical properties, ultra-thin (n)-contactAutores:Han C., Isabella O., Mazzarella L., Paul Procel, Tichelaar F.D., Weeber A., Yang G., Zeman M., Zhao Y.Fuentes:scopus