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Use of Hydrogen Molybdenum Bronze in Vacuum‐Deposited Perovskite Solar Cells

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Use of Hydrogen Molybdenum Bronze in Vacuum‐Deposited Perovskite Solar Cells

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dc.contributor.author Zanoni, Kassio P. S.
dc.contributor.author Pérez-del-Rey, Daniel
dc.contributor.author Dreessen, Chris
dc.contributor.author Hernández-Fenollosa, M. Ángeles
dc.contributor.author De Camargo, Andrea S. S.
dc.contributor.author Sessolo, Michele
dc.contributor.author Boix, Pablo P.
dc.contributor.author Bolink, Henk
dc.date.accessioned 2020-06-29T08:04:14Z
dc.date.available 2020-09-11T04:45:06Z
dc.date.issued 2019
dc.identifier.citation Zanoni, Kassio P. S. Pérez-del-Rey, Daniel Dreessen, Chris Hernández-Fenollosa, M. Ángeles De Camargo, Andrea S. S. Sessolo, Michele Boix, Pablo P. Bolink, Henk 2019 Use of Hydrogen Molybdenum Bronze in Vacuum‐Deposited Perovskite Solar Cells Energy Technology 8 4 1900734
dc.identifier.uri https://hdl.handle.net/10550/75196
dc.description.abstract Herein, the dehydration of a hydrogen molybdenum bronze (HYMoO3), converting it to molybdenum oxide (MoOX), is explored toward the development of perovskite solar cells (PSCs) for the first time. H0.11MoO3 bronze is synthesized, characterized, and deposited on indium tin oxide (ITO) under different concentrations and annealing conditions for in situ conversion into MoOX with appropriate oxygen vacancies. Vacuum‐deposited PSCs are fabricated using the as‐produced MoOX hole injection layers, achieving a power conversion efficiency of 17.3% (average) for the optimal device. The latter has its stability and reproducibility tested, proving the robustness and affordability of the developed hole transport layer in PSCs.
dc.language.iso eng
dc.relation.ispartof Energy Technology, 2019, vol. 8, num. 4, p. 1900734
dc.subject Materials
dc.subject Cèl·lules fotoelèctriques
dc.title Use of Hydrogen Molybdenum Bronze in Vacuum‐Deposited Perovskite Solar Cells
dc.type journal article es_ES
dc.date.updated 2020-06-29T08:04:15Z
dc.identifier.doi 10.1002/ente.201900734
dc.identifier.idgrec 135962
dc.embargo.terms 1 year
dc.rights.accessRights open access es_ES

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