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Near IR-sensitive, non-toxic, polymer/nanocrystal solar cells employing Bi <inf>2</inf>S <inf>3</inf> as the electron acceptor
ArticleAbstract:Palabras claves:Autores:Bernechea M., Konstantatos G., Luis Martínez, Pelayo Garcia De Arquer F.Fuentes:scopusHeterovalent cation substitutional doping for quantum dot homojunction solar cells
ArticleAbstract: Colloidal quantum dots have emerged as a material platform for low-cost high-performance optoelectroPalabras claves:Autores:Diedenhofen S.L., Konstantatos G., Luis Martínez, Magén C., Pelayo Garcia De Arquer F., Rath A.K., So D., Stavrinadis A.Fuentes:scopusHybrid solution-processed bulk heterojunction solar cells based on bismuth sulfide nanocrystals
ArticleAbstract: High efficiency organic and hybrid solar cells create demand for novel electron acceptor materials tPalabras claves:Autores:Bernechea M., Diedenhofen S.L., Higuchi S., Konstantatos G., Luis Martínez, Stavrinadis A., Tajima K.Fuentes:scopusSolution-processed heterojunction solar cells based on p-type PbS quantum dots and n-type Bi <inf>2</inf>S <inf>3</inf> Nanocrystals
ArticleAbstract: Bi 2S 3 nanocrystals are employed as an n-type, non-toxic, inorganic, solution-processed semiconductPalabras claves:bismuth sulfide, heterojunctions, Nanocrystals, non-toxic materials, p-n junctions, quantum dots, solar cells, solution processingAutores:Bernechea M., Konstantatos G., Luis Martínez, Rath A.K.Fuentes:scopusSolution-processed inorganic bulk nano-heterojunctions and their application to solar cells
ArticleAbstract: In the last decade, solution-processed quantum dot/nanocrystal solar cells have emerged as a very prPalabras claves:Autores:Bernechea M., Konstantatos G., Luis Martínez, Osmond J., Pelayo Garcia De Arquer F., Rath A.K.Fuentes:scopus