The Swift Surge of Perovskite Photovoltaics
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Título
The Swift Surge of Perovskite PhotovoltaicsAutoría
Fecha de publicación
2013Editor
American Chemical SocietyISSN
1948-7185Cita bibliográfica
BISQUERT, Juan. The Swift Surge of Perovskite Photovoltaics. The Journal of Physical Chemistry Letters, 2013, vol. 4, no 15, p. 2597-2598.Tipo de documento
info:eu-repo/semantics/articleVersión de la editorial
http://pubs.acs.org/doi/abs/10.1021/jz401435dVersión
info:eu-repo/semantics/publishedVersionPalabras clave / Materias
Resumen
The breakthrough early 1990s dye sensitization of mesoscopic TiO2 films along with a regenerative iodide redox couple led to the explosive growth of dye-sensitized solar cell (DSC) research. The pioneering work of ... [+]
The breakthrough early 1990s dye sensitization of mesoscopic TiO2 films along with a regenerative iodide redox couple led to the explosive growth of dye-sensitized solar cell (DSC) research. The pioneering work of Grätzel and colleagues also made it possible to develop a solid-state DSSC with spiro-oMETAD as the hole conductor and thus replace the liquid electrolyte in the cell. Research efforts of Konenkamp and others further initiated the search for the “extremely thin absorber” (ETA) nanostructured solar cell, using TiO2 as the electron conductor, an inorganic absorber, and a hole conductor. Another major research thrust was by Weller, Kamat, Zaban, Nozik, Hodes, and others, who employed inorganic quantum dots (e.g., CdS and CdSe) as sensitizers. While discussing developments in sensitized solar cells, it is important to note the contributions of early visionaries like Gerischer, Sutin, and Bard, who were first to establish the concepts of sensitization using dye molecules and semiconductor nanostructures. [-]
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The Journal of Physical Chemistry Letters (2013), vol. 4, no 15Derechos de acceso
© 2013 American Chemical Society
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