Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores

Functionalizing two-dimensional (2D) hybrid perovskites with organic chromophores is a novel approach to tune their optoelectronic properties. Here, the authors report efficient charge separation and conduction in 2D hybrid perovskite nanoplatelets by incorporating an electron acceptor chromophore.

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Autores principales: María C. Gélvez-Rueda, Magnus B. Fridriksson, Rajeev K. Dubey, Wolter F. Jager, Ward van der Stam, Ferdinand C. Grozema
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ad25b406c1744aac93eb1e3ffe48d40e
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spelling oai:doaj.org-article:ad25b406c1744aac93eb1e3ffe48d40e2021-12-02T15:37:18ZOvercoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores10.1038/s41467-020-15869-72041-1723https://doaj.org/article/ad25b406c1744aac93eb1e3ffe48d40e2020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15869-7https://doaj.org/toc/2041-1723Functionalizing two-dimensional (2D) hybrid perovskites with organic chromophores is a novel approach to tune their optoelectronic properties. Here, the authors report efficient charge separation and conduction in 2D hybrid perovskite nanoplatelets by incorporating an electron acceptor chromophore.María C. Gélvez-RuedaMagnus B. FridrikssonRajeev K. DubeyWolter F. JagerWard van der StamFerdinand C. GrozemaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
María C. Gélvez-Rueda
Magnus B. Fridriksson
Rajeev K. Dubey
Wolter F. Jager
Ward van der Stam
Ferdinand C. Grozema
Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
description Functionalizing two-dimensional (2D) hybrid perovskites with organic chromophores is a novel approach to tune their optoelectronic properties. Here, the authors report efficient charge separation and conduction in 2D hybrid perovskite nanoplatelets by incorporating an electron acceptor chromophore.
format article
author María C. Gélvez-Rueda
Magnus B. Fridriksson
Rajeev K. Dubey
Wolter F. Jager
Ward van der Stam
Ferdinand C. Grozema
author_facet María C. Gélvez-Rueda
Magnus B. Fridriksson
Rajeev K. Dubey
Wolter F. Jager
Ward van der Stam
Ferdinand C. Grozema
author_sort María C. Gélvez-Rueda
title Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
title_short Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
title_full Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
title_fullStr Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
title_full_unstemmed Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
title_sort overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ad25b406c1744aac93eb1e3ffe48d40e
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AT magnusbfridriksson overcomingtheexcitonbindingenergyintwodimensionalperovskitenanoplateletsbyattachmentofconjugatedorganicchromophores
AT rajeevkdubey overcomingtheexcitonbindingenergyintwodimensionalperovskitenanoplateletsbyattachmentofconjugatedorganicchromophores
AT wolterfjager overcomingtheexcitonbindingenergyintwodimensionalperovskitenanoplateletsbyattachmentofconjugatedorganicchromophores
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