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First principles study on electronic and optical properties of Cu<inf>2</inf>CoGeS<inf>4</inf> for photovoltaic conversion and photocatalytic applications
ArticleAbstract: In this study, the structural, electrical, and optical characteristics of the Stannite Cu2CoGeS4 (CCPalabras claves:CCGS, Electronic properies, Kesterite, optical properties, Solar cellAutores:Beraich M., Courel Piedrahita M., David Laroze, Díaz P., El Fatimy A., Feddi E.M., Hamdaoui J.E., Lakaal K., Laura M. Pérez, Mazkad D.Fuentes:scopusNumerical modeling of the size effect in CdSe/ZnS and InP/ZnSbased Intermediate Band Solar Cells
ArticleAbstract: New generation of solar cells based on the implementation of quantum dots in the intrinsic region haPalabras claves:Conversion efficiency, Intermediate band, Photovoltaic, Quantum dots materials, solar cellsAutores:Courel Piedrahita M., David Laroze, Dujardin F., El Aouami A.E., Feddi E.M., Feddi K., Laura M. Pérez, Zazoui M.Fuentes:scopusParameters Optimization of Intermediate Band Solar Cells: Cases of PbTe/CdTe, PbSe/ZnTe and InN/GaN Quantum Dots
ArticleAbstract: Photovoltaic cells, based on quantum dots implementation in the intrinsic region, are one of the mosPalabras claves:Intermediate band solar cells, power conversion efficiency, quantum dotsAutores:Abdellah A.B., Aouami A.E.L., Courel Piedrahita M., David Laroze, Dujardin F., Feddi E.M., Feddi K., Laura M. Pérez, Riquelme J.A., Tasco V.Fuentes:scopusInfluence of geometrical shape on the characteristics of the multiple inn/in<inf>x</inf>ga<inf>1−x</inf>n quantum dot solar cells
ArticleAbstract: Solar cells that are based on the implementation of quantum dots in the intrinsic region, so-calledPalabras claves:Intermediate band solar cells, power conversion efficiency, quantum dotsAutores:Aouami A.E.L., Courel Piedrahita M., David Laroze, Dujardin F., El-Yadri M., Feddi E.M., Feddi K., Laura M. Pérez, Suazo M.J.Fuentes:scopusImpact of loss mechanisms through defects on Sb<inf>2</inf>(S<inf>1-x</inf>Se<inf>x</inf>)<inf>3</inf>/CdS solar cells with p-n structure
ArticleAbstract: Antimony sulfide selenide (Sb2(S1-xSex)3) material has emerged as a potential candidate for solar cePalabras claves:Autores:Courel Piedrahita M., David Laroze, Feddi E.M., Jimenez T., Laura M. Pérez, Montoya De Los Santos I., Morán-Lázaro J.P., Ojeda Martinez M., Sánchez-Rodríguez F.J.Fuentes:scopus