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Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs

Cu-content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) perovskites with A-site strontium doping have been tuned as cobalt-free cathode materials for high-performance anode-supported SOFCs, working at an intermediate-temperature range. All obtained oxides belong to the R-3c trigonal system, and phase transitions...

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Autores principales: Lach, Jakub, Zheng, Kun, Kluczowski, Ryszard, Niemczyk, Anna, Zhao, Hailei, Chen, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9782004/
https://www.ncbi.nlm.nih.gov/pubmed/36556543
http://dx.doi.org/10.3390/ma15248737
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author Lach, Jakub
Zheng, Kun
Kluczowski, Ryszard
Niemczyk, Anna
Zhao, Hailei
Chen, Min
author_facet Lach, Jakub
Zheng, Kun
Kluczowski, Ryszard
Niemczyk, Anna
Zhao, Hailei
Chen, Min
author_sort Lach, Jakub
collection PubMed
description Cu-content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) perovskites with A-site strontium doping have been tuned as cobalt-free cathode materials for high-performance anode-supported SOFCs, working at an intermediate-temperature range. All obtained oxides belong to the R-3c trigonal system, and phase transitions from the R-3c space group to a Pm-3m simple perovskite have been observed by HT-XRD studies. The substitution of lanthanum with strontium lowers the phase transition temperature, while increasing the thermal expansion coefficient (TEC) and oxygen non-stoichiometry δ of the studied materials. The thermal expansion is anisotropic, and TEC values are similar to commonly used solid electrolytes (e.g., 14.1 × 10(−6) K(−1) for La(0.95)Sr(0.05)Ni(0.5)Cu(0.5)O(3−δ)). The oxygen content of investigated compounds has been determined as a function of temperature. All studied materials are chemically compatible with GDC-10 but react with LSGM and 8YSZ electrolytes. The anode-supported SOFC with a La(0.95)Sr(0.05)Ni(0.5)Cu(0.5)O(3−δ) cathode presents an excellent power density of 445 mW·cm(−2) at 650 °C in humidified H(2). The results indicate that La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) perovskites with strontium doping at the A-site can be qualified as promising cathode candidates for anode-supported SOFCs, yielding promising electrochemical performance in the intermediate-temperature range.
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spelling pubmed-97820042022-12-24 Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs Lach, Jakub Zheng, Kun Kluczowski, Ryszard Niemczyk, Anna Zhao, Hailei Chen, Min Materials (Basel) Article Cu-content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) perovskites with A-site strontium doping have been tuned as cobalt-free cathode materials for high-performance anode-supported SOFCs, working at an intermediate-temperature range. All obtained oxides belong to the R-3c trigonal system, and phase transitions from the R-3c space group to a Pm-3m simple perovskite have been observed by HT-XRD studies. The substitution of lanthanum with strontium lowers the phase transition temperature, while increasing the thermal expansion coefficient (TEC) and oxygen non-stoichiometry δ of the studied materials. The thermal expansion is anisotropic, and TEC values are similar to commonly used solid electrolytes (e.g., 14.1 × 10(−6) K(−1) for La(0.95)Sr(0.05)Ni(0.5)Cu(0.5)O(3−δ)). The oxygen content of investigated compounds has been determined as a function of temperature. All studied materials are chemically compatible with GDC-10 but react with LSGM and 8YSZ electrolytes. The anode-supported SOFC with a La(0.95)Sr(0.05)Ni(0.5)Cu(0.5)O(3−δ) cathode presents an excellent power density of 445 mW·cm(−2) at 650 °C in humidified H(2). The results indicate that La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) perovskites with strontium doping at the A-site can be qualified as promising cathode candidates for anode-supported SOFCs, yielding promising electrochemical performance in the intermediate-temperature range. MDPI 2022-12-07 /pmc/articles/PMC9782004/ /pubmed/36556543 http://dx.doi.org/10.3390/ma15248737 Text en © 2022 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
Lach, Jakub
Zheng, Kun
Kluczowski, Ryszard
Niemczyk, Anna
Zhao, Hailei
Chen, Min
Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs
title Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs
title_full Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs
title_fullStr Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs
title_full_unstemmed Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs
title_short Tuning Cu-Content La(1−x)Sr(x)Ni(1−y)Cu(y)O(3−δ) with Strontium Doping as Cobalt-Free Cathode Materials for High-Performance Anode-Supported IT-SOFCs
title_sort tuning cu-content la(1−x)sr(x)ni(1−y)cu(y)o(3−δ) with strontium doping as cobalt-free cathode materials for high-performance anode-supported it-sofcs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9782004/
https://www.ncbi.nlm.nih.gov/pubmed/36556543
http://dx.doi.org/10.3390/ma15248737
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