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Synthesis and Characterization of CexSr1-xCr0.5Mn0.5O3-δ Perovskites as Anode Materials for Solid Oxide Fuel Cells (SOFC)
被引:11
作者:
Lay, Elisa
[1
,2
]
Dessemond, Laurent
[2
]
Gauthier, Gilles H.
[1
,3
]
机构:
[1] CEA, LITEN, F-38054 Grenoble, France
[2] Grenoble Inst Technol UJF, CNRS UMR5631, LEPMI, Lab Electrochim & Phys Chim Mat & Interfaces, 1130 Rue Piscine,BP 75, F-38402 St Martin Dheres, France
[3] Univ Ind Santander, Grp INTERFASE, Ciudad Univ,Calle 9,Carrera 27, Santander, Colombia
关键词:
SOFC;
Anode;
MIEC;
cerium;
chromo-manganite;
electrical conductivity;
EIS;
ELECTRICAL-PROPERTIES;
ELECTROCHEMICAL-BEHAVIOR;
MANGANITE PEROVSKITE;
MIXED CONDUCTIVITY;
ELECTROLYTE OXIDE;
SUBSTITUTED LSCM;
METHANE;
TRANSPORT;
OXIDATION;
EFFICIENT;
D O I:
10.1016/j.electacta.2016.09.044
中图分类号:
O646 [电化学、电解、磁化学];
学科分类号:
081704 ;
摘要:
CexSr1-xCr0.5Mn0.5O3 (CeSCM) compounds with x = 0.25 and 0.5 have been prepared in argon. In comparison to the non-doped manganite Ce0.25Sr0.75MnO3, synthesized in air, chromium for manganese substitution improves the stability in wet hydrogen atmosphere, characteristic of an SOFC anode. In argon, the electrical conductivity at 900 degrees C is 32.8 and 34.9 S cm (1) for CeSCM 25 and CeSCM 50, respectively. In wet hydrogen, it is about 1 S cm (1) at 900 degrees C for CeSCM 25 and only 0.2 S cm (1) for CeSCM 50. The rate of hydrogen oxidation reaction has been studied by using dense cone-shaped electrodes. Two main limiting steps are observed: the transfer of ionic species at the anode/YSZ interface at high frequency and hydrogen adsorption process at the surface of the electrode material at low frequency. In particular, the low electrical conductivity of CeSCM 50 seems detrimental for the performance. (C) 2016 Elsevier Ltd. All rights reserved.
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页码:420 / 428
页数:9
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