An innovative approach to design SOFC air electrode materials: high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3) perovskites synthesized by the sol–gel method
Juliusz Dąbrowa
1, 2, 3, 4, 5
,
Anna Olszewska
3, 4, 5, 6, 7
,
A Falkenstein
8, 9, 10, 11, 12
,
Christian Schwab
8, 9, 10, 11, 12
,
Maria Szymczak
1, 2, 3, 4, 5
,
Marek Zajusz
1, 2, 3, 4, 5
,
Maciej Moździerz
1, 2, 3, 4, 5
,
Andrzej Mikuła
1, 2, 3, 4, 5
,
Klaudia Zielińska
1, 2, 3, 4, 5
,
Katarzyna Berent
3, 5, 13, 14, 15
,
Tomasz Czeppe
5, 16, 17, 18, 19
,
Manfred Martin
8, 9, 10, 11, 12
,
Konrad Świerczek
3, 4, 5, 6, 7, 20, 21
2
Faculty of Materials Science and Ceramics
4
30-059 Krakow
|
5
POLAND
|
7
Faculty of Energy and Fuels
9
Institute of Physical Chemistry
11
52074 Aachen
|
12
GERMANY
|
14
Academic Centre for Materials and Nanotechnology
15
30-059 Kraków
|
16
Institute of Metallurgy and Materials Sciences, Polish Academy of Sciences, Reymonta 25 St., Krakow, Poland
|
18
Polish Academy Of Sciences
|
19
Krakow
|
21
AGH Centre of Energy
Publication type: Journal Article
Publication date: 2020-09-14
scimago Q1
wos Q1
SJR: 2.462
CiteScore: 16.7
Impact factor: 9.5
ISSN: 20507488, 20507496, 09599428, 13645501
General Chemistry
General Materials Science
Renewable Energy, Sustainability and the Environment
Abstract
Among the for the first time reported Cr-containing high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3, 0.4 and 0.5) perovskite-type oxides, the selected Sr-doped La0.7Sr0.3(Co,Cr,Fe,Mn,Ni)O3−δ material is documented to possess attractive properties as a candidate air electrode material for Solid Oxide Fuel Cells (SOFCs). Nanosized powders of the considered oxides are obtained using a modified Pechini sol–gel method. In the formed solid solution with a simple perovskite structure the strontium solubility limit is found to be at least x = 0.3. Room temperature (RT) structural data indicate the presence of rhombohedral structural distortion (Rc symmetry) in the materials. High-temperature structural studies for the selected La0.7Sr0.3(Co,Cr,Fe,Mn,Ni)O3−δ indicate the occurrence of a phase transition to an aristotype Pmm structure at ca. 800 °C. The linear thermal expansion coefficient in the RT-1000 °C range is found to be moderate, 16.0(3) × 10−6 K−1. The results of impedance spectroscopy measurements support the semiconducting-type behavior of the electrical conductivity for all single-phase materials, in a temperature range of RT-1000 °C. The maximum recorded conductivity for the La0.7Sr0.3(Co,Cr,Fe,Mn,Ni)O3−δ composition exceeds 16 S cm−1 in the 900–1000 °C range, being suitable for application. Furthermore, chemical stability toward the La0.8Sr0.2Ga0.8Mg0.2O3−δ (LSGM) electrolyte is proven. Considering the presence of chromium, typically deleterious to the performance, the measured value of the total cathodic polarization resistance for the La0.7Sr0.3(Co,Cr,Fe,Mn,Ni)O3−δ-based electrode, being 0.126 Ω cm−2 at 900 °C, seems to be very attractive. The results obtained for a button-type fuel cell indicate power densities at a level of 550 mW cm−2 at 900 °C. Therefore, it can be considered that the high entropy-based approach enables to propose alternative SOFC air electrode materials, with otherwise inaccessible chemical compositions.
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Dąbrowa J. et al. An innovative approach to design SOFC air electrode materials: high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3) perovskites synthesized by the sol–gel method // Journal of Materials Chemistry A. 2020. Vol. 8. No. 46. pp. 24455-24468.
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Dąbrowa J. et al. An innovative approach to design SOFC air electrode materials: high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3) perovskites synthesized by the sol–gel method // Journal of Materials Chemistry A. 2020. Vol. 8. No. 46. pp. 24455-24468.
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TY - JOUR
DO - 10.1039/d0ta06356h
UR - https://xlink.rsc.org/?DOI=D0TA06356H
TI - An innovative approach to design SOFC air electrode materials: high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3) perovskites synthesized by the sol–gel method
T2 - Journal of Materials Chemistry A
AU - Dąbrowa, Juliusz
AU - Olszewska, Anna
AU - Falkenstein, A
AU - Schwab, Christian
AU - Szymczak, Maria
AU - Zajusz, Marek
AU - Moździerz, Maciej
AU - Mikuła, Andrzej
AU - Zielińska, Klaudia
AU - Berent, Katarzyna
AU - Czeppe, Tomasz
AU - Martin, Manfred
AU - Świerczek, Konrad
PY - 2020
DA - 2020/09/14
PB - Royal Society of Chemistry (RSC)
SP - 24455-24468
IS - 46
VL - 8
SN - 2050-7488
SN - 2050-7496
SN - 0959-9428
SN - 1364-5501
ER -
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@article{2020_Dąbrowa,
author = {Juliusz Dąbrowa and Anna Olszewska and A Falkenstein and Christian Schwab and Maria Szymczak and Marek Zajusz and Maciej Moździerz and Andrzej Mikuła and Klaudia Zielińska and Katarzyna Berent and Tomasz Czeppe and Manfred Martin and Konrad Świerczek and others},
title = {An innovative approach to design SOFC air electrode materials: high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3) perovskites synthesized by the sol–gel method},
journal = {Journal of Materials Chemistry A},
year = {2020},
volume = {8},
publisher = {Royal Society of Chemistry (RSC)},
month = {sep},
url = {https://xlink.rsc.org/?DOI=D0TA06356H},
number = {46},
pages = {24455--24468},
doi = {10.1039/d0ta06356h}
}
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Dąbrowa, Juliusz, et al. “An innovative approach to design SOFC air electrode materials: high entropy La1−xSrx(Co,Cr,Fe,Mn,Ni)O3−δ (x = 0, 0.1, 0.2, 0.3) perovskites synthesized by the sol–gel method.” Journal of Materials Chemistry A, vol. 8, no. 46, Sep. 2020, pp. 24455-24468. https://xlink.rsc.org/?DOI=D0TA06356H.