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Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers

Improving the perovskite/electron-transporting layer (ETL) interface is a crucial task to boost the performance of perovskite solar cells (PSCs). This is utterly fundamental in an inverted (p–i–n) configuration using fullerene-based ETLs. Here, we propose a scalable strategy to improve fullerene-bas...

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Autores principales: Zanetta, Andrea, Bulfaro, Isabella, Faini, Fabiola, Manzi, Matteo, Pica, Giovanni, De Bastiani, Michele, Bellani, Sebastiano, Zappia, Marilena Isabella, Bianca, Gabriele, Gabatel, Luca, Panda, Jaya-Kumar, Del Rio Castillo, Antonio Esaú, Prato, Mirko, Lauciello, Simone, Bonaccorso, Francesco, Grancini, Giulia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10281336/
https://www.ncbi.nlm.nih.gov/pubmed/37346737
http://dx.doi.org/10.1039/d2ta07512a
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author Zanetta, Andrea
Bulfaro, Isabella
Faini, Fabiola
Manzi, Matteo
Pica, Giovanni
De Bastiani, Michele
Bellani, Sebastiano
Zappia, Marilena Isabella
Bianca, Gabriele
Gabatel, Luca
Panda, Jaya-Kumar
Del Rio Castillo, Antonio Esaú
Prato, Mirko
Lauciello, Simone
Bonaccorso, Francesco
Grancini, Giulia
author_facet Zanetta, Andrea
Bulfaro, Isabella
Faini, Fabiola
Manzi, Matteo
Pica, Giovanni
De Bastiani, Michele
Bellani, Sebastiano
Zappia, Marilena Isabella
Bianca, Gabriele
Gabatel, Luca
Panda, Jaya-Kumar
Del Rio Castillo, Antonio Esaú
Prato, Mirko
Lauciello, Simone
Bonaccorso, Francesco
Grancini, Giulia
author_sort Zanetta, Andrea
collection PubMed
description Improving the perovskite/electron-transporting layer (ETL) interface is a crucial task to boost the performance of perovskite solar cells (PSCs). This is utterly fundamental in an inverted (p–i–n) configuration using fullerene-based ETLs. Here, we propose a scalable strategy to improve fullerene-based ETLs by incorporating high-quality few-layer graphene flakes (GFs), industrially produced through wet-jet milling exfoliation of graphite, into phenyl-C61-butyric acid methyl ester (PCBM). Our new composite ETL (GF:PCBM) can be processed into an ultrathin (∼10 nm), pinhole-free film atop the perovskite. We find that the presence of GFs in the PCBM matrix reduces defect-mediated recombination, while creating preferential paths for the extraction of electrons towards the current collector. The use of our GF-based composite ETL resulted in a significant enhancement in the open circuit voltage and fill factor of triple cation-based inverted PSCs, boosting the power conversion efficiency from ∼19% up to 20.8% upon the incorporation of GFs into the ETL.
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spelling pubmed-102813362023-06-21 Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers Zanetta, Andrea Bulfaro, Isabella Faini, Fabiola Manzi, Matteo Pica, Giovanni De Bastiani, Michele Bellani, Sebastiano Zappia, Marilena Isabella Bianca, Gabriele Gabatel, Luca Panda, Jaya-Kumar Del Rio Castillo, Antonio Esaú Prato, Mirko Lauciello, Simone Bonaccorso, Francesco Grancini, Giulia J Mater Chem A Mater Chemistry Improving the perovskite/electron-transporting layer (ETL) interface is a crucial task to boost the performance of perovskite solar cells (PSCs). This is utterly fundamental in an inverted (p–i–n) configuration using fullerene-based ETLs. Here, we propose a scalable strategy to improve fullerene-based ETLs by incorporating high-quality few-layer graphene flakes (GFs), industrially produced through wet-jet milling exfoliation of graphite, into phenyl-C61-butyric acid methyl ester (PCBM). Our new composite ETL (GF:PCBM) can be processed into an ultrathin (∼10 nm), pinhole-free film atop the perovskite. We find that the presence of GFs in the PCBM matrix reduces defect-mediated recombination, while creating preferential paths for the extraction of electrons towards the current collector. The use of our GF-based composite ETL resulted in a significant enhancement in the open circuit voltage and fill factor of triple cation-based inverted PSCs, boosting the power conversion efficiency from ∼19% up to 20.8% upon the incorporation of GFs into the ETL. The Royal Society of Chemistry 2022-11-30 /pmc/articles/PMC10281336/ /pubmed/37346737 http://dx.doi.org/10.1039/d2ta07512a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Zanetta, Andrea
Bulfaro, Isabella
Faini, Fabiola
Manzi, Matteo
Pica, Giovanni
De Bastiani, Michele
Bellani, Sebastiano
Zappia, Marilena Isabella
Bianca, Gabriele
Gabatel, Luca
Panda, Jaya-Kumar
Del Rio Castillo, Antonio Esaú
Prato, Mirko
Lauciello, Simone
Bonaccorso, Francesco
Grancini, Giulia
Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
title Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
title_full Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
title_fullStr Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
title_full_unstemmed Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
title_short Enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
title_sort enhancing charge extraction in inverted perovskite solar cells contacts via ultrathin graphene:fullerene composite interlayers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10281336/
https://www.ncbi.nlm.nih.gov/pubmed/37346737
http://dx.doi.org/10.1039/d2ta07512a
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