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Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application

In this report, the morphological, optical, electrical, and photovoltaic properties of copper oxide and calcium-doped copper oxide thin films produced via the spray coating method were studied. The thermal post treatment at 300 °C in an inert atmosphere allowed us to obtain a single phase of Cu(2)O...

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Autores principales: Gawlińska-Nęcek, Katarzyna, Starowicz, Zbigniew, Woźny, Janusz, Nuckowski, Paweł M., Musztyfaga-Staszuk, Małgorzata, Panek, Piotr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10648554/
https://www.ncbi.nlm.nih.gov/pubmed/37959745
http://dx.doi.org/10.3390/molecules28217324
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author Gawlińska-Nęcek, Katarzyna
Starowicz, Zbigniew
Woźny, Janusz
Nuckowski, Paweł M.
Musztyfaga-Staszuk, Małgorzata
Panek, Piotr
author_facet Gawlińska-Nęcek, Katarzyna
Starowicz, Zbigniew
Woźny, Janusz
Nuckowski, Paweł M.
Musztyfaga-Staszuk, Małgorzata
Panek, Piotr
author_sort Gawlińska-Nęcek, Katarzyna
collection PubMed
description In this report, the morphological, optical, electrical, and photovoltaic properties of copper oxide and calcium-doped copper oxide thin films produced via the spray coating method were studied. The thermal post treatment at 300 °C in an inert atmosphere allowed us to obtain a single phase of Cu(2)O with 21 Ωcm of resistivity (ρ). In this study, 1 wt%, 2 wt%, 3 wt%, 4 wt%, 5 wt%, and 10 wt% Ca admixtures with copper oxide were investigated. The determined optimal calcium dopant concentration was 4 wt%. XRD analysis was used to reveal the chemical composition of the produced layers. It was found that a calcium dopant does not change the layer composition but improves its electrical parameters. Based on UV-Vis spectra, the band gap energy and Urbach energy were calculated. The morphology of produced thin films was described as smooth and nanocrystalline, corresponding to a grain size calculated based on the Scherrer equation. Finally, it was shown that the developed protocol of low-resistivity copper oxide deposition via the spray coating technique can be successfully implemented in heterojunction solar cell production. The I–V parameters of Ag/n-type CzSi/REF:CuO(x) and 4Ca:CuO(x)/Carbon were collected, and the achieved efficiency was 2.38%.
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spelling pubmed-106485542023-10-29 Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application Gawlińska-Nęcek, Katarzyna Starowicz, Zbigniew Woźny, Janusz Nuckowski, Paweł M. Musztyfaga-Staszuk, Małgorzata Panek, Piotr Molecules Article In this report, the morphological, optical, electrical, and photovoltaic properties of copper oxide and calcium-doped copper oxide thin films produced via the spray coating method were studied. The thermal post treatment at 300 °C in an inert atmosphere allowed us to obtain a single phase of Cu(2)O with 21 Ωcm of resistivity (ρ). In this study, 1 wt%, 2 wt%, 3 wt%, 4 wt%, 5 wt%, and 10 wt% Ca admixtures with copper oxide were investigated. The determined optimal calcium dopant concentration was 4 wt%. XRD analysis was used to reveal the chemical composition of the produced layers. It was found that a calcium dopant does not change the layer composition but improves its electrical parameters. Based on UV-Vis spectra, the band gap energy and Urbach energy were calculated. The morphology of produced thin films was described as smooth and nanocrystalline, corresponding to a grain size calculated based on the Scherrer equation. Finally, it was shown that the developed protocol of low-resistivity copper oxide deposition via the spray coating technique can be successfully implemented in heterojunction solar cell production. The I–V parameters of Ag/n-type CzSi/REF:CuO(x) and 4Ca:CuO(x)/Carbon were collected, and the achieved efficiency was 2.38%. MDPI 2023-10-29 /pmc/articles/PMC10648554/ /pubmed/37959745 http://dx.doi.org/10.3390/molecules28217324 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
Gawlińska-Nęcek, Katarzyna
Starowicz, Zbigniew
Woźny, Janusz
Nuckowski, Paweł M.
Musztyfaga-Staszuk, Małgorzata
Panek, Piotr
Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application
title Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application
title_full Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application
title_fullStr Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application
title_full_unstemmed Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application
title_short Ca-Doped Copper (I) Oxide Deposited via the Spray Coating Technique for Heterojunction Solar Cell Application
title_sort ca-doped copper (i) oxide deposited via the spray coating technique for heterojunction solar cell application
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10648554/
https://www.ncbi.nlm.nih.gov/pubmed/37959745
http://dx.doi.org/10.3390/molecules28217324
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