1 - 8 |
Effect of B-site doing on thermal cycle shrinkage for La0.8Sr0.2Mn1-xMxO3+delta perovskites (M=Mg, Al, Ti, Mn, Fe, Co, Ni; 0 <= x <= 0.1) Mori M |
9 - 13 |
SOFC-type microreactors that generate hydrogen for PEFC applications Tomita A, Hirabayashi D, Nagao M, Sano M, Hibino T |
15 - 18 |
Thermostable region of an oxide ion conductor, Bi7WO13.5 (=7Bi(2)O(3) center dot 2WO(3)), and the solid solubility extension Watanabe A, Ono A |
19 - 26 |
Synthesis and lithium ion conductivity of cubic deficient perovskites Sr0.5+xLi0.5-2x square xTi0.5Ta0.5O3 and the La-doped compounds Inaguma Y, Seo A, Katsumata T |
27 - 33 |
Electronic conductivity measurement of Sm- and La-doped ceria ceramics by Hebb-Wagner method Shimonosono T, Hirata Y, Ehira Y, Sameshima S, Horita T, Yokokawa H |
35 - 39 |
Li ion conductivity of solid electrolyte, Li3-2xMxInBr6 (M=Mg, Ca, Sr, Ba) Tomita Y, Matsushita H, Yonekura H, Yamauchi Y, Yamada K, Kobayashi K |
41 - 48 |
Imaging of mass transports around the oxide scale/Fe-Cr alloy interfaces Horita T, Xiong YP, Yamaji K, Kishimoto H, Sakai N, Brito ME, Yokokawa H |
49 - 55 |
High performance Ni-Sm0.15Ce0.85O2-delta cermet anodes for intermediate temperature solid oxide fuel cells using LaGaO3 based oxide electrolytes Wang SZ, Ando M, Ishihara T, Takita Y |
57 - 66 |
From caterpillar model to solid-state ionics Kobayashi M |
67 - 71 |
C-type cubic Y2O3 single crystal growth by electrolysis of Y3+ ion conducting solid electrolyte Masui T, Kim YW, Imanaka N |
73 - 80 |
Single crystal growth and oxide ion conductivity of apatite-type rare-earth silicates Higuchi M, Masubuchi Y, Nakayama S, Kikkawa S, Kodaira K |
81 - 86 |
High electric conversion efficiency and electrochemical properties of anode-supported SOFCs Matsuzaki Y, Baba Y, Sakurai T |
87 - 95 |
AC impedance behavior of a practical-size single-cell SOFC under DC current Momma A, Kaga Y, Takano K, Nozaki K, Negishi A, Kato K, Kato T, Inagaki T, Yoshida H, Hosoi K, Hoshino K, Akbay T, Akikusa J, Yamada M, Chitose N |
97 - 102 |
Ag-Zr(SC)O-2 cermet cathode for reduced temperature SOFCs Sasaki K, Hosoda K, Lan TN, Yasumoto K, Wang S, Dokiya M |
XI - XII |
Energy research based on high temperature materials science and electrochemistry - In Memoriam of Masayuki Dokiya 1939-2003 Mizusaki J, Yamamoto O |
103 - 109 |
Effect of water on electrochemical oxygen reduction at the interface between fluorite-type oxide-ion conductors and various types of electrodes Sakai N, Yamaji K, Horita T, Xiong YP, Kishimoto H, Brito ME, Yokokawa H |
111 - 117 |
Characteristics of anodic polarization of solid oxide fuel cells under pressurized conditions Kikuchi R, Yano T, Takeguchi T, Eguchi K |
119 - 126 |
Fifteen years of SOFC development in Australia Foger K, Love JG |
127 - 134 |
Electrochemical characterisation of oxygen nonstoichiometry and transport in mixed conducting oxides - Application to La0.4Ba0.6Fe0.8Co0.2O3-delta Diethelm S, Van herle J |
135 - 149 |
Transport properties of solid oxide electrolyte ceramics: a brief review Kharton VV, Marques FMB, Atkinson A |
151 - 156 |
Performance of nickel-scandia-stabilized zirconia cermet anodes for SOFCs in 3% H2O-CH4 Sumi H, Ukai K, Mizutani Y, Mori H, Wen CJ, Takahashi H, Yamamoto O |
157 - 162 |
Preparation, thermal expansion and electrical conductivity of La0.6Sr0.4Co1-xGaxO3-delta (x=0.0-0.4) as a new cathode material of SOFC Wang S, Zheng R, Suzuki A, Hashimoto T |
163 - 174 |
Preparation and evaluation of doped ceria interlayer on supported stabilized zirconia electrolyte SOFCs by wet ceramic processes Nguyen TL, Kobayashi K, Honda T, Iimura Y, Kato K, Neghisi A, Nozaki K, Tappero F, Sasaki K, Shirahama H, Ota K, Dokiya M, Kato T |
175 - 183 |
Mixed potential protonic-electronic conductivity in the Dion-Jacobson-type layered perovskites in hydrogen-containing atmosphere and their application in ammonia sensors Thangadurai V, Weppner W |
185 - 191 |
Effect of slurry-coated LaSrMnO3 on the electrical property of Fe-Cr alloy for metallic interconnect of SOFC Kim JH, Song RH, Hyun SH |
193 - 203 |
Crystal structure and phase transition behavior of La1-xSrxGa1-yMgyO3-delta Shibasaki T, Furuya T, Wang SR, Hashimoto T |
205 - 221 |
Protons in ceria and their roles in SOFC electrode reactions from thermodynamic and SIMS analyses Yokokawa H, Horita T, Sakai N, Yamaji K, Brito ME, Xiong YP, Kishimoto H |
223 - 232 |
Macroscale modeling of cathode formation in SOFC Ivers-Tiffee E, Weber A, Schmid K, Krebs V |
233 - 243 |
Temperature dependence of oxygen ion transport in Sr plus Mg-substituted LaGaO3 (LSGM) with varying grain sizes Haavik C, Ottesen EM, Nomura K, Kilner JA, Norby T |
245 - 252 |
Impedance spectroscopy of perovskite air electrodes for SOFC prepared by laser ablation method Imanishi N, Matsumura T, Sumiya Y, Yoshimura K, Hirano A, Takeda Y, Mori D, Kanno R |
253 - 260 |
Oxygen transfer across composite oxygen transport membranes van Hassel BA |
261 - 270 |
Electrodes and electrolytes in micro-SOFCs: a discussion of geometrical constraints Fleig J, Tuller HL, Maier J |
271 - 277 |
Solid oxide fuel cell technology-features and applications Minh NQ |
279 - 286 |
Factors controlling the oxide ion conductivity of fluorite and perovskite structured oxides Mogensen M, Lybye D, Bonanos N, Hendriksen R, Poulsen FW |
287 - 293 |
Oxygen nonstoichiometry of the perovskite-type oxide la(1-x)Ca(x)CrO(3-delta) (x=0.1, 0.2, 0.3) Onuma S, Yashiro K, Miyoshi S, Kaimai A, Matsumoto H, Nigara Y, Kawada T, Mizusaki J, Kawamura K, Sakai N, Yokokawa H |
295 - 302 |
3D simulation on the current path in planar SOFCs Yakabe H, Sakurai I |