JOURNAL OF POWER SOURCES | 卷:326 |
An efficient electrocatalyst as cathode material for solid oxide fuel cells: BaFe0.95Sn0.05O3-δ | |
Article | |
Dong, Feifei1  Ni, Meng1  He, Wei1  Chen, Yubo2  Yang, Guangming2  Chen, Dengjie3  Shao, Zongping2  | |
[1] Hong Kong Polytech Univ, Dept Bldg & Real Estate, Bldg Energy Res Grp, Kowloon 999077, Hong Kong, Peoples R China | |
[2] Nanjing Tech Univ, Coll Chem & Chem Engn, State Key Lab Mat Oriented Chem Engn, 5 Xin Mofan Rd, Nanjing 210009, Peoples R China | |
[3] Jinan Univ, Dept Chem, Guangzhou 510632, Guangdong, Peoples R China | |
关键词: Solid oxide fuel cell; Cathode; Electrocatalyst; Doped-BaFeO3-delta; Tin; | |
DOI : 10.1016/j.jpowsour.2016.07.023 | |
来源: Elsevier | |
【 摘 要 】
The B-site substitution with the minor amount of tin in BaFeO3-delta parent oxide is expected to stabilize a single perovskite lattice structure. In this study, a composition of BaFe0.95Sn0.05O3-delta (BFS) as a new cathode material for intermediate-temperature solid oxide fuel cells (IT-SOFCs) is synthesized and characterized. Special attention is paid to the exploration of some basic properties including phase structure, oxygen non-stoichiometry, electrical conductivity, oxygen bulk diffusion coefficient, and surface exchange coefficient, which are of significant importance to the electrochemical activity of cathode materials. BFS holds a single cubic perovskite structure over temperature range of cell operation, determined by in-situ X-ray diffraction and scanning transmission electron microscope. A high oxygen vacancy concentration at cell operating temperatures is observed by combining thermo-gravimetric data and iodometric titration result. Furthermore, electrical conductivity relaxation measurement illustrates the fast oxygen bulk diffusion and surface exchange kinetics. Accordingly, testing cells based on BFS cathode material demonstrate the low polarization resistance of 0.033 Omega cm(2) and high peak power density of 1033 mW cm(-2) at 700 degrees C, as well as a relatively stable long-term operation for similar to 300 h. The results obtained suggest that BFS perovskite oxide holds a great promise as an oxygen reduction electrocatalyst for IT-SOFCs. (C) 2016 Elsevier B.V. All rights reserved.
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