Step-change in high temperature steam electrolysis performance of perovskite oxide cathodes with exsolution of B-site dopants

被引:314
作者
Tsekouras, George [1 ]
Neagu, Dragos [1 ]
Irvine, John T. S. [1 ]
机构
[1] Univ St Andrews, Sch Chem, St Andrews KY16 9ST, Fife, Scotland
基金
英国工程与自然科学研究理事会;
关键词
FUEL; ANODES; CATALYSTS; PRECIPITATION; HYDROGEN; DEFECTS; PD;
D O I
10.1039/c2ee22547f
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
B-site doped, A-site deficient perovskite oxide titanates with formula La0.4Sr0.4Mnxn+Ti1-xO3-gamma-delta (M = Fe3+ or Ni2+; x = 0.06; gamma = (4 - n)x/2) were employed as solid oxide electrolysis cell (SOEC) cathodes for hydrogen production via high temperature steam electrolysis at 900 degrees C. A-site deficiency provided additional driving force for the exsolution of a proportion of B-site dopants at the surface in the form of metallic nanoparticles under reducing SOEC cathode operating conditions. In the case of La0.4Sr0.4Fe0.06Ti0.94O2.97, this represents the first time that Fe-0 has been exsolved from a perovskite in such a way. Exsolution was due in part to the inability of the host lattice to accommodate vacancies (introduced (delta) oxygen vacancies (V-o(..)) and fixed A-site (V-Sr('')) and inherent (gamma) oxygen vacancies) beyond a certain limit. The presence of electrocatalytically active Fe-0 or Ni-0 nanoparticles and higher V-o(..) concentrations dramatically lowered the activation barrier to steam electrolysis compared to the parent material (x = 0). The use of defect chemistry to drive the exsolution of less reducible dopant cations could conceivably be extended to produce new catalytically active perovskites with unique properties.
引用
收藏
页码:256 / 266
页数:11
相关论文
共 38 条
[1]   Transition metal-doped rare earth vanadates: a regenerable catalytic material for SOFC anodes [J].
Adijanto, Lawrence ;
Padmanabhan, Venu Balaji ;
Kuengas, Rainer ;
Gorte, Raymond J. ;
Vohs, John M. .
JOURNAL OF MATERIALS CHEMISTRY, 2012, 22 (22) :11396-11402
[2]   Advanced anodes for high-temperature fuel cells [J].
Atkinson, A ;
Barnett, S ;
Gorte, RJ ;
Irvine, JTS ;
Mcevoy, AJ ;
Mogensen, M ;
Singhal, SC ;
Vohs, J .
NATURE MATERIALS, 2004, 3 (01) :17-27
[3]   The electrochemistry of Ni pattern anodes used as solid oxide fuel cell model electrodes [J].
Bieberle, A ;
Meier, LP ;
Gauckler, LJ .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2001, 148 (06) :A646-A656
[4]   Pd-substituted (La,Sr)CrO3-δ-Ce0.9Gd0.1O2-δ solid oxide fuel cell anodes exhibiting regenerative behavior [J].
Bierschenk, David M. ;
Potter-Nelson, Elizabeth ;
Hoel, Cathleen ;
Liao, Yougui ;
Marks, Laurence ;
Poeppelmeier, Kenneth R. ;
Barnett, Scott A. .
JOURNAL OF POWER SOURCES, 2011, 196 (06) :3089-3094
[5]   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
[6]   Chemical, Electronic and Nanostructure Dynamics on Sr(Ti1-xFex)O3 Thin-Film Surfaces at High Temperatures [J].
Chen, Yan ;
Jung, Woo Chul ;
Kuru, Yener ;
Tuller, Harry ;
Yildiz, Bilge .
SOLID OXIDE FUEL CELLS 12 (SOFC XII), 2011, 35 (01) :2409-2416
[7]   Activation and Ripening of Impregnated Manganese Containing Perovskite SOFC Electrodes under Redox Cycling [J].
Corre, G. ;
Kim, G. ;
Cassidy, M. ;
Vohs, J. M. ;
Gorte, R. J. ;
Irvine, J. T. S. .
CHEMISTRY OF MATERIALS, 2009, 21 (06) :1077-1084
[8]   Tolerance factor rules for Sr1-x-yCaxBayMnO3 perovskites [J].
Dabrowski, B ;
Chmaissem, O ;
Mais, J ;
Kolesnik, S ;
Jorgensen, JD ;
Short, S .
JOURNAL OF SOLID STATE CHEMISTRY, 2003, 170 (01) :154-164
[9]   CLASSIFICATION OF TILTED OCTAHEDRA IN PEROVSKITES [J].
GLAZER, AM .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1972, B 28 (NOV15) :3384-&
[10]  
Goodenough JB, 2001, STRUCT BOND, V98, P1