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Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes

In this study, electrochemical properties of layered perovskites having non-stoichiometric compositions (Sm(1−x)BaCo(2)O(5+d), x = 0, 0. 01, 0.02, 0.03, 0.04, 0.05, 0.10, and 0.15) were analyzed for the direct application of cathode materials for Intermediate Temperature-operating Solid Oxide Fuel C...

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Autores principales: Kim, Chan Gyu, Woo, Sung Hun, Song, Kyeong Eun, Baek, Seung-Wook, Kang, Hyunil, Choi, Won Seok, Kim, Jung Hyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097098/
https://www.ncbi.nlm.nih.gov/pubmed/33968896
http://dx.doi.org/10.3389/fchem.2021.633868
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author Kim, Chan Gyu
Woo, Sung Hun
Song, Kyeong Eun
Baek, Seung-Wook
Kang, Hyunil
Choi, Won Seok
Kim, Jung Hyun
author_facet Kim, Chan Gyu
Woo, Sung Hun
Song, Kyeong Eun
Baek, Seung-Wook
Kang, Hyunil
Choi, Won Seok
Kim, Jung Hyun
author_sort Kim, Chan Gyu
collection PubMed
description In this study, electrochemical properties of layered perovskites having non-stoichiometric compositions (Sm(1−x)BaCo(2)O(5+d), x = 0, 0. 01, 0.02, 0.03, 0.04, 0.05, 0.10, and 0.15) were analyzed for the direct application of cathode materials for Intermediate Temperature-operating Solid Oxide Fuel Cells (IT-SOFC). From the Sm(1−x)BaCo(2)O(5+d) oxide systems calcined at 1,100°C for 8 h, single phase (SmBaCo(2)O(5+d), SBCO_1) was maintained only in the case of the x = 0 composition. In the compositions of x = 0.05–0.10, BaCoO(2.6) was mixed with the pattern of SBCO. In addition, in the composition of x = 0.15, it was confirmed that BaCoO(2.6) and CoO phases coexisted with SBCO. In the compositions of Sm(1−x)BaCo(2)O(5+d), the overall Area Specific Resistance (ASR) values decreased as the removal amount of Sm increased from x = 0–0.10; then, the values increased for compositions from x = 0.15. For example, the ASRs of SBCO_1, Sm(0.95)BaCo(2)O(5+d) (SBCO_0.95), Sm(0.90)BaCo(2)O(5+d) (SBCO_0.90), and Sm(0.85)BaCo(2)O(5+d) (SBCO_0.85) measured at 600°C were 0.301, 0.147, 0.119, and 0.179 Ω cm(2), respectively. In particular, SBCO_0.90 was found to have an excellent ASR property of about 0.035 Ω cm(2) at 700°C. Typical properties of the metal–insulator transition (MIT) electrical conductivity were shown in all measured compositions. The temperature at which MIT occurred increased as the non-stoichiometric composition increased.
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spelling pubmed-80970982021-05-06 Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes Kim, Chan Gyu Woo, Sung Hun Song, Kyeong Eun Baek, Seung-Wook Kang, Hyunil Choi, Won Seok Kim, Jung Hyun Front Chem Chemistry In this study, electrochemical properties of layered perovskites having non-stoichiometric compositions (Sm(1−x)BaCo(2)O(5+d), x = 0, 0. 01, 0.02, 0.03, 0.04, 0.05, 0.10, and 0.15) were analyzed for the direct application of cathode materials for Intermediate Temperature-operating Solid Oxide Fuel Cells (IT-SOFC). From the Sm(1−x)BaCo(2)O(5+d) oxide systems calcined at 1,100°C for 8 h, single phase (SmBaCo(2)O(5+d), SBCO_1) was maintained only in the case of the x = 0 composition. In the compositions of x = 0.05–0.10, BaCoO(2.6) was mixed with the pattern of SBCO. In addition, in the composition of x = 0.15, it was confirmed that BaCoO(2.6) and CoO phases coexisted with SBCO. In the compositions of Sm(1−x)BaCo(2)O(5+d), the overall Area Specific Resistance (ASR) values decreased as the removal amount of Sm increased from x = 0–0.10; then, the values increased for compositions from x = 0.15. For example, the ASRs of SBCO_1, Sm(0.95)BaCo(2)O(5+d) (SBCO_0.95), Sm(0.90)BaCo(2)O(5+d) (SBCO_0.90), and Sm(0.85)BaCo(2)O(5+d) (SBCO_0.85) measured at 600°C were 0.301, 0.147, 0.119, and 0.179 Ω cm(2), respectively. In particular, SBCO_0.90 was found to have an excellent ASR property of about 0.035 Ω cm(2) at 700°C. Typical properties of the metal–insulator transition (MIT) electrical conductivity were shown in all measured compositions. The temperature at which MIT occurred increased as the non-stoichiometric composition increased. Frontiers Media S.A. 2021-04-21 /pmc/articles/PMC8097098/ /pubmed/33968896 http://dx.doi.org/10.3389/fchem.2021.633868 Text en Copyright © 2021 Kim, Woo, Song, Baek, Kang, Choi and Kim. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Kim, Chan Gyu
Woo, Sung Hun
Song, Kyeong Eun
Baek, Seung-Wook
Kang, Hyunil
Choi, Won Seok
Kim, Jung Hyun
Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes
title Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes
title_full Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes
title_fullStr Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes
title_full_unstemmed Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes
title_short Enhanced Electrochemical Properties of Non-stoichiometric Layered Perovskites, Sm(1−x)BaCo(2)O(5+d), for IT-SOFC Cathodes
title_sort enhanced electrochemical properties of non-stoichiometric layered perovskites, sm(1−x)baco(2)o(5+d), for it-sofc cathodes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097098/
https://www.ncbi.nlm.nih.gov/pubmed/33968896
http://dx.doi.org/10.3389/fchem.2021.633868
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