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Ca- and Ni-Doped Pr0.5Ba0.5FeO3-delta as a Highly Active and Robust Cathode for High-Temperature Solid Oxide Fuel Cell

Authors
Lim, ChaehyunYang, YejinSin, Yong-wookChoi, SihyukKim, Guntae
Issue Date
17-Sep-2020
Publisher
AMER CHEMICAL SOC
Citation
ENERGY & FUELS, v.34, no.9, pp.11458 - 11463
Journal Title
ENERGY & FUELS
Volume
34
Number
9
Start Page
11458
End Page
11463
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/20062
DOI
10.1021/acs.energyfuels.0c02241
ISSN
0887-0624
Abstract
In general, La1-xSrxMnO3 (LSM) has been commonly used as a cathode for the commercial high-temperature solid oxide fuel cell (SOFC), but it is better to develop a cathode with higher and longer performance at high temperature (>900 degrees C). In this regard, Fe-based mixed ionic electronic conductors can be considered as one of the potential candidates for the replacement of LSM in terms of excellent catalytic activity. However, they suffer from performance degradation due to the coarsening of particles during high-temperature fabrication and operation. Herein, Ca- and Ni-doped Pr0.5Ba0.5FeO3-delta (PBF) is studied, where Ca doping on Ba improves the electronic/ionic conductivity and Ni doping on Fe further enhances the thermal stability. The optimal composition of Pr0.5Ba0.3Ca0.2Fe0.7Ni0.3O3-delta (PBCFNi30) cathode shows a very low cathodic polarization resistance of 0.061 Omega cm(2) with a small degradation rate of 0.086 x 10(-3) Omega cm(2)/h at 850 degrees C. Therefore, PBCFNi30 can be considered as a promising cathode for commercial high-temperature SOFC.
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