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In-situ segregation of A-site defect (La0.6Sr0.4)0.90Co0.2Fe0.8O3-δ to form a high-performance solid oxide fuel cell cathode material with heterostructure.

Authors :
Bai, Jinghe
Zhou, Defeng
Zhu, Xiaofei
Wang, Ning
Chen, Ruyi
Wang, Bolin
Yan, Wenfu
Source :
Ceramics International. Feb2023, Vol. 49 Issue 4, p5687-5699. 13p.
Publication Year :
2023

Abstract

As a potential cathode material for solid oxide fuel cells, the commercial application of La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3-δ (LSCF) has to face the challenges in insufficient oxygen reduction reaction (ORR) activity, segregation of Sr element, and CO 2 poisoning. Therefore, the effect of A-site non-stoichiometry on the electrochemical performance of (LS) 1-x CFs (x = −0.05, 0, 0.05, 0.10, 0.15) from the aspect of microstructure/elemental surface chemical environment evolution is investigated in this paper. The results show that (LS) 0.90 CF has the best ORR activity and the highest electrochemical performance. The excellent electrochemical performance is attributed to the (LS) 0.90 CF/Co 2 FeO 4 /CoFe 2 O 4 -type heterostructure, formed by in-situ segregation induced by A-site defects, which improves the surface oxygen diffusion coefficient and chemical bulk diffusion coefficient of the cathode. At the same time, the A-site defect can effectively inhibit the segregation of Sr element in (LS) 0.90 CF, thereby improving the tolerance of CO 2. At 800 °C, the area-specific resistance (ASR) of (LS) 0.90 CF (0.023 Ω cm2) is 66.7% lower than that of LSCF (0.069 Ω cm2), and the peak power density (1.57 Wcm−2) is 1.8 times higher than that of LSCF (0.87 Wcm−2). Therefore, perovskite A-site defect-induced B-site segregation to form heterostructures provides an effective strategy for the preparation of high-performance cathode materials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
49
Issue :
4
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
161280967
Full Text :
https://doi.org/10.1016/j.ceramint.2022.10.295