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Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics

The present contribution aims to enhance solar cells’ performance via the development of advanced luminescent down-shifting based on encapsulated nanostructured perovskite materials. Here, thin films of inorganic lead halide (CsPbBr(3)) perovskite nanocrystal luminophores were synthetized, by hot-in...

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Autores principales: Pinheiro, Ana, Ruivo, Andreia, Rocha, João, Ferro, Marta, Pinto, Joana Vaz, Deuermeier, Jonas, Mateus, Tiago, Santa, Ana, Mendes, Manuel J., Martins, Rodrigo, Gago, Sandra, Laia, César A. T., Águas, Hugo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9823874/
https://www.ncbi.nlm.nih.gov/pubmed/36616119
http://dx.doi.org/10.3390/nano13010210
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author Pinheiro, Ana
Ruivo, Andreia
Rocha, João
Ferro, Marta
Pinto, Joana Vaz
Deuermeier, Jonas
Mateus, Tiago
Santa, Ana
Mendes, Manuel J.
Martins, Rodrigo
Gago, Sandra
Laia, César A. T.
Águas, Hugo
author_facet Pinheiro, Ana
Ruivo, Andreia
Rocha, João
Ferro, Marta
Pinto, Joana Vaz
Deuermeier, Jonas
Mateus, Tiago
Santa, Ana
Mendes, Manuel J.
Martins, Rodrigo
Gago, Sandra
Laia, César A. T.
Águas, Hugo
author_sort Pinheiro, Ana
collection PubMed
description The present contribution aims to enhance solar cells’ performance via the development of advanced luminescent down-shifting based on encapsulated nanostructured perovskite materials. Here, thin films of inorganic lead halide (CsPbBr(3)) perovskite nanocrystal luminophores were synthetized, by hot-injection, deposited on glass substrates by spin-coating, and encapsulated with parylene type C, via chemical vapor deposition, to protect and stabilize the films. The optical properties of these thin films were characterized by absorption, emission and 2D contour spectra, their structure by X-ray diffraction and X-ray photoelectron spectroscopy, and the morphology by Scanning Transmission Electron microscopy. I–V curve and spectral response nanocrystalline silicon photovoltaic (nc-Si:H PV) cells were studied in the absence and presence of the perovskite and parylene luminescent down-shifting layers. The incorporation of the CsPbBr(3) nanocrystals and their encapsulation with the parylene type C polymeric coating led to an increase in the current generated and the spectral response of the PV cells in the regime of the nanocrystals’ fluorescence emission. A 3.1% increase in the short circuit current density and a 5.6% increase in the power conversion efficiency were observed.
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spelling pubmed-98238742023-01-08 Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics Pinheiro, Ana Ruivo, Andreia Rocha, João Ferro, Marta Pinto, Joana Vaz Deuermeier, Jonas Mateus, Tiago Santa, Ana Mendes, Manuel J. Martins, Rodrigo Gago, Sandra Laia, César A. T. Águas, Hugo Nanomaterials (Basel) Article The present contribution aims to enhance solar cells’ performance via the development of advanced luminescent down-shifting based on encapsulated nanostructured perovskite materials. Here, thin films of inorganic lead halide (CsPbBr(3)) perovskite nanocrystal luminophores were synthetized, by hot-injection, deposited on glass substrates by spin-coating, and encapsulated with parylene type C, via chemical vapor deposition, to protect and stabilize the films. The optical properties of these thin films were characterized by absorption, emission and 2D contour spectra, their structure by X-ray diffraction and X-ray photoelectron spectroscopy, and the morphology by Scanning Transmission Electron microscopy. I–V curve and spectral response nanocrystalline silicon photovoltaic (nc-Si:H PV) cells were studied in the absence and presence of the perovskite and parylene luminescent down-shifting layers. The incorporation of the CsPbBr(3) nanocrystals and their encapsulation with the parylene type C polymeric coating led to an increase in the current generated and the spectral response of the PV cells in the regime of the nanocrystals’ fluorescence emission. A 3.1% increase in the short circuit current density and a 5.6% increase in the power conversion efficiency were observed. MDPI 2023-01-03 /pmc/articles/PMC9823874/ /pubmed/36616119 http://dx.doi.org/10.3390/nano13010210 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pinheiro, Ana
Ruivo, Andreia
Rocha, João
Ferro, Marta
Pinto, Joana Vaz
Deuermeier, Jonas
Mateus, Tiago
Santa, Ana
Mendes, Manuel J.
Martins, Rodrigo
Gago, Sandra
Laia, César A. T.
Águas, Hugo
Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics
title Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics
title_full Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics
title_fullStr Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics
title_full_unstemmed Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics
title_short Parylene-Sealed Perovskite Nanocrystals Down-Shifting Layer for Luminescent Spectral Matching in Thin Film Photovoltaics
title_sort parylene-sealed perovskite nanocrystals down-shifting layer for luminescent spectral matching in thin film photovoltaics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9823874/
https://www.ncbi.nlm.nih.gov/pubmed/36616119
http://dx.doi.org/10.3390/nano13010210
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