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Achieving 23.83% conversion efficiency in silicon heterojunction solar cell with ultra-thin MoO<inf>x</inf> hole collector layer via tailoring (i)a-Si:H/MoO<inf>x</inf> interface
ArticleAbstract: Thin films of transition metal oxides such as molybdenum oxide (MoOx) are attractive for applicationPalabras claves:dipole, fundamental study, industrial approach, Numerical modelling, plasma treatment, silicon heterojunction solar cells, tailoring MoO x, ultra-thin MoO xAutores:Alcañiz A., Cao L., Han C., Isabella O., Mazzarella L., Özkol E., Paul Procel, Santbergen R., Tichelaar F.D., Yan J., Yang G., Yao Z., 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:scopusThe role of heterointerfaces and subgap energy states on transport mechanisms in silicon heterojunction solar cells
ArticleAbstract: The contact resistivity is a key parameter to reach high conversion efficiency in solar cells, especPalabras claves:charge collection, contact resistivity, interdigitated back contact (IBC), optoelectrical simulations, silicon heterojunction solar cells, trap-assisted tunnelling, tunnellingAutores:Han C., Isabella O., Mazzarella L., Paul Procel, Saez A., Tobon C.R., Xu H., Yang G., Zeman M., Zhao Y.Fuentes:scopus