Interface chemistry in LSM-YSZ composite SOFC cathodes

被引:89
作者
Backhaus-Ricoult, M. [1 ]
机构
[1] Corning Inc, Crystalline Mat Res, Corning, NY 14831 USA
基金
美国国家科学基金会;
关键词
SOFC; cathode; zirconia; perovskite; interface; reactivity; ELNES;
D O I
10.1016/j.ssi.2006.08.011
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
(La,Sr)MnO3-3YSZ interface chemistry in air-annealed and operated SOFC cathodes has been studied by high spatial resolution TEM/EELS. Major changes in Mn L-2,L-3 and O K ELNES were observed. A mixture of manganese 3+/4+ is found in the LSM bulk phase. In contact with LSM, zirconia forms a solid solution with dissolved lanthanum and manganese. Manganese is always divalent in this solid solution. After processing and annealing in air, the (La,Sr)MnO3-3YSZ interface shows no ELNES features that distinguish from the adjacent bulk phases. After single cell SOFC operation in air/hydrogen, a strong enrichment of Mn2+ at the cathode interfaces is found with Mn-O interfacial bond contributions. Due to the high Mn2+ level at the interface, the local oxygen vacancy concentration in zirconia at the interface is increased and the electron transfer for the oxygen incorporation in the electrolyte is made easier. Thus, in the operating composite cathode, oxygen incorporation from the gas into the electrolyte is promoted by a Mn2+ enrichment at the triple phase boundaries. Cathodic polarization in the operating single cell is the cause for the Mn2+ enrichment. Interface point defect modeling is used to evaluate interface defect concentrations at LSM/YSZ interfaces. Mn4+ interfacial clusters are the dominant interface defects at very high oxygen partial pressure, while the concentration of Mn2+ interfacial defects increases with decreasing oxygen chemical potential or under polarization. This finding is in agreement with the experimental ELNES results. Model and experiments suggest that cathodic oxygen exchange is promoted under oxygen deficient conditions. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:2195 / 2200
页数:6
相关论文
共 19 条
[11]   SEGREGATION ASPECTS AT THE FRACTURE SURFACES OF 8 WT-PERCENT YTTRIA-ZIRCONIA THERMAL BARRIER COATINGS [J].
INGO, GM ;
PADELETTI, G .
SURFACE AND INTERFACE ANALYSIS, 1994, 21 (6-7) :450-+
[12]   Lanthanide transport in stabilized zirconias: Interrelation between ionic radius and diffusion coefficient [J].
Kilo, M ;
Taylor, MA ;
Argirusis, C ;
Borchardt, G ;
Weber, S ;
Scherrer, H ;
Jackson, RA .
JOURNAL OF CHEMICAL PHYSICS, 2004, 121 (11) :5482-5487
[13]   Cation self-diffusion of 44Ca, 88Y, and 96Zr in single-crystalline calcia- and yttria-doped zirconia [J].
Kilo, M ;
Taylor, MA ;
Argirusis, C ;
Borchardt, G ;
Lesage, B ;
Weber, S ;
Scherrer, S ;
Scherrer, H ;
Schroeder, M ;
Martin, M .
JOURNAL OF APPLIED PHYSICS, 2003, 94 (12) :7547-7552
[14]   Cation mobility in Y2O3- and CaO-stabilised ZrO2 studied by tracer diffusion and mechanical spectroscopy [J].
Kilo, M ;
Weller, M ;
Borchardt, G ;
Damson, B ;
Weber, S ;
Scherrer, S .
DIFFUSIONS IN MATERIALS: DIMAT2000, PTS 1 & 2, 2001, 194-1 :1039-1044
[15]   Oxygen nonstoichiometry and defect equilibrium in the perovskite-type oxides La1-xSrxMnO3+d [J].
Mizusaki, J ;
Mori, N ;
Takai, H ;
Yonemura, Y ;
Minamiue, H ;
Tagawa, H ;
Dokiya, M ;
Inaba, H ;
Naraya, K ;
Sasamoto, T ;
Hashimoto, T .
SOLID STATE IONICS, 2000, 129 (1-4) :163-177
[16]   Defect chemistry modelling of oxygen-stoichiometry, vacancy concentrations, and conductivity of (La1-xSrx)yMnO3±δ [J].
Poulsen, FW .
SOLID STATE IONICS, 2000, 129 (1-4) :145-162
[17]  
VANROOSMALEN J, 1993, J SOLID STATE CHEM, V93, P212
[18]  
YOKUHARA H, 1996, SOLID STATE IONICS, V86, P1161
[19]  
5089455