Mechanism for enhanced oxygen reduction kinetics at the (La,Sr)CoO3-δ/(La,Sr)2CoO4+δ hetero-interface

被引:118
作者
Han, Jeong Woo [1 ]
Yildiz, Bilge [1 ]
机构
[1] MIT, Lab Electrochem Interfaces, Dept Nucl Sci & Engn, Cambridge, MA 02139 USA
基金
美国能源部; 美国国家科学基金会;
关键词
OXIDE FUEL-CELLS; IONIC-CONDUCTIVITY; CATHODE MATERIALS; SINGLE-CRYSTALS; SURFACE; CATION; DIFFUSION; TRANSPORT; EXCHANGE; LA2NIO4+DELTA;
D O I
10.1039/c2ee03592h
中图分类号
O6 [化学];
学科分类号
070301 [无机化学];
摘要
The recently reported fast oxygen reduction kinetics at the interface of (La,Sr)CoO3-delta (LSC113) and (La,Sr)(2)CoO4+delta (LSC214) phases opened up new questions for the potential role of dissimilar interfaces in advanced cathodes for solid oxide fuel cells (SOFCs). Using first-principles based calculations in the framework of density functional theory, we quantitatively probed the possible mechanisms that govern the oxygen reduction activity enhancement at this hetero-interface as a model system. Our findings show that both the strongly anisotropic oxygen incorporation kinetics on the LSC214 and the lattice strain in the vicinity of the interface are important contributors to such enhancement. The LSC214(100) surface exposed to the ambient at the LSC113/LSC214 interface facilitates oxygen incorporation because the oxygen molecules very favorably adsorb onto it compared to the LSC214(001) and LSC113(001) surfaces, providing a large source term for oxygen incorporation. Lattice strain field present near the hetero-interface accelerates oxygen incorporation kinetics especially on the LSC113(001) surface. At 500 degrees C, 4 x 10(2) times faster oxygen incorporation kinetics are predicted in the vicinity of the LSC113/LSC214 hetero-interface with 50% Sr-doped LSC214 compared to that on the single phase LSC113(001) surface. Contributions from both the anisotropy and the local strain effects are of comparable magnitude. The insights obtained in this work suggest that hetero-structures, which have a large area of (100) surfaces and smaller thickness in the [001] direction of the Ruddlesden-Popper phases, and larger tensile strain near the interface would be promising for high-performance cathodes.
引用
收藏
页码:8598 / 8607
页数:10
相关论文
共 62 条
[1]
[2]
Determination of Surface Exchange Coefficients of LSM, LSCF, YSZ, GDC Constituent Materials in Composite SOFC Cathodes [J].
Armstrong, E. N. ;
Duncan, K. L. ;
Oh, D. J. ;
Weaver, J. F. ;
Wachsman, E. D. .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2011, 158 (05) :B492-B499
[3]
Anisotropic ionic transport properties in La2NiO4+δ single crystals [J].
Bassat, JM ;
Odier, P ;
Villesuzanne, A ;
Marin, C ;
Pouchard, M .
SOLID STATE IONICS, 2004, 167 (3-4) :341-347
[4]
Layered Ruddlesden-Popper manganese oxides: Synthesis and cation ordering [J].
Battle, PD ;
Green, MA ;
Laskey, NS ;
Millburn, JE ;
Murphy, L ;
Rosseinsky, MJ ;
Sullivan, SP ;
Vente, JF .
CHEMISTRY OF MATERIALS, 1997, 9 (02) :552-559
[5]
Dipole correction for surface supercell calculations [J].
Bengtsson, L .
PHYSICAL REVIEW B, 1999, 59 (19) :12301-12304
[6]
PROJECTOR AUGMENTED-WAVE METHOD [J].
BLOCHL, PE .
PHYSICAL REVIEW B, 1994, 50 (24) :17953-17979
[7]
Anisotropic oxygen diffusion properties in epitaxial thin films of La2NiO4+δ [J].
Burriel, Monica ;
Garcia, Gemma ;
Santiso, Jose ;
Kilner, John A. ;
Richard, J. Chater C. ;
Skinner, Stephen J. .
JOURNAL OF MATERIALS CHEMISTRY, 2008, 18 (04) :416-422
[8]
Structure and ionic conductivity of NaLnTiO(4); Comparison with those of Na(2)Ln(2)Ti(3)O(10) (Ln=La, Nd, Sm, and Gd) [J].
Byeon, SH ;
Park, K ;
Itoh, M .
JOURNAL OF SOLID STATE CHEMISTRY, 1996, 121 (02) :430-436
[9]
Surface Electronic Structure Transitions at High Temperature on Perovskite Oxides: The Case of Strained La0.8Sr0.2CoO3 Thin Films [J].
Cai, Zhuhua ;
Kuru, Yener ;
Han, Jeong Woo ;
Chen, Yan ;
Yildiz, Bilge .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2011, 133 (44) :17696-17704
[10]
Orbital reconstruction and covalent bonding at an oxide interface [J].
Chakhalian, J. ;
Freeland, J. W. ;
Habermeier, H.-U. ;
Cristiani, G. ;
Khaliullin, G. ;
van Veenendaal, M. ;
Keimer, B. .
SCIENCE, 2007, 318 (5853) :1114-1117