3 - 6 |
Problems with Hebb-Wagner Polarization Measurements Due to Overpotentials and Decomposition of the Sample Riess I, Safadi R, Tuller HL |
7 - 11 |
On the Structure and Dynamics of Heterovalently Doped Beta-PbF2 Teneicken J, Gunsser W, Karus M, Meyer A, Murin IV |
12 - 18 |
Electrical Surface Versus Bulk Properties of Fe-Doped TiO2 Single-Crystals Bernasik A, Rekas M, Sloma M, Weppner W |
19 - 28 |
Frequency-Dependence of Ionic-Conductivity in Lattice-Gas Models Sato H, Datta A |
29 - 34 |
Ion Migration and Dielectric Effects in Aluminum-Oxide Films Russe S, Lohrengel MM, Schultze JW |
35 - 38 |
The Relaxation Dispersion of the Ionic-Conductivity in Cubic Zirconias Orliukas A, Bohac P, Sasaki K, Gauckler LJ |
41 - 46 |
Optical-Absorption Relaxation Applied to SrTiO3 and ZrO2 - An in-Situ Method to Study Trapping Effects on Chemical Diffusion Bieger T, Yugami H, Nicoloso N, Maier J, Waser R |
47 - 53 |
Conductivity and Seebeck Measurements on Strontium Ferrates Poulsen FW, Lauvstad G, Tunold R |
54 - 58 |
Defect Structure and Oxygen Migration in the La2O3 Catalyst Islam MS, Ilett DJ |
59 - 66 |
Conduction in Titanate Pyrochlores - Role of Dopants Kramer S, Spears M, Tuller HL |
67 - 71 |
Demixing of Doped Oxides - Influence of Defect Interactions Martin M, Schmackpfeffer R |
72 - 75 |
Diffuse Neutron-Scattering of Iron-Doped Nickel-Oxide Hoser A, Martin M, Schweika W, Carlsson AE, Caudron R, Pyka N |
79 - 85 |
Oxide-Ion Motion in Bismuth Sesquioxide (Delta-Bi2O3) Koto K, Suda K, Ishizawa N, Maeda H |
86 - 88 |
A New Phenomenological Description of the Electrical Relaxation in Ionic Conductors Schutt HJ |
89 - 93 |
Thermoelectric-Power of Tetragonal ZrO2 Sloma M, Weppner W, Rekas M |
94 - 99 |
Diffuse-Scattering of Beta-Ag3Si by Neutron Powder Diffraction Sakuma T, Suzuki F, Hoshino S |
IX - IX |
Proceedings of the 9th International-Conference on Solid-State Ionics, the Hague, the Netherlands, September 12-17, 1993 - Preface Boukamp BA, Bouwmeester HJ, Burggraaf AJ, Vanderput PJ, Schoonman J |
103 - 107 |
Polymer Conformation and Ionic Association in Complexes of Lithium, Sodium and Potassium Triflate with Poly(Ethylene Oxide) Oligomers Frech R, Huang WW |
108 - 114 |
Electrolyte and Ion Memory Effects in Highly Conjugated Polypyrrole Skaarup S, West K, Zachauchristiansen B, Careem MA, Senadeera GK |
115 - 121 |
Impedance Spectroscopy in Electrode/Electrolyte Interface Investigations Arbizzani C, Borghini M, Mastragostino M, Meneghello L, Zanelli A |
122 - 126 |
Comparative-Study of the Mixed-Alkali Effect in Poly(Ethylene Oxide) and Poly(Propylene Oxide) Thiocyanate Salt Systems Teeters D, Hill CM |
127 - 134 |
Polymer Electrolyte Kinetics as a Function of Formation Temperature Glasse MD, Latham RJ, Linford RG, Schlindwein WS, Careem MA |
135 - 139 |
Thermal and Transport-Properties in the Polymer Electrolyte System P(EO)(N)-Pb(ClO4)(2) Ferloni P, Mustarelli P, Saraswat AK, Chiodelli G, Magistris A |
140 - 146 |
Polymer Electrolytes Based on Cross-Linked Silylated Poly-Vinyl-Ether and Lithium Perchlorate Andrei M, Marchese L, Roggero A, Prosperi P |
147 - 151 |
Ionic Environment and Transport in Polymer Electrolytes Chadwick AV, Hanmer P, Coppola L, Ranieri G, Terenzi M |
152 - 159 |
Conductivity and Structural Studies of Peo-Nh4Scn Electrolytes Prusinowska D, Wieczorek W, Wycislik H, Siekierski M, Przyluski J, Soltysiak J |
160 - 164 |
Ionic Conductivities of PPO-Litfsi Complexes Roux C, Sanchez JY |
165 - 171 |
Light-Scattering and Luminescence Studies of M(Cf3So3)(X) Polyether Complexes Containing Trivalent Cations Petersen G, Brodin A, Torell LM, Smith M |
172 - 176 |
Structure and Ionic-Conductivity of Graft Polymer Network Electrolytes Containing Some Star-Like Side-Chains and Liclo4 Li D, Hu CP, Ying SK |
177 - 182 |
Ion Conductivity, Electrical Relaxation and Ion Association in Poly(Propylene Glycol) Complexed with Ammonium Triflate Albinsson I, Mellander BE, Stevens JR |
185 - 194 |
Importance of the Surface Exchange Kinetics as Rate-Limiting Step in Oxygen Permeation Through Mixed-Conducting Oxides Bouwmeester HJ, Kruidhof H, Burggraaf AJ |
195 - 198 |
Transport-Properties of Materials with the Scheelite Structure Hoffart L, Heider U, Jorissen L, Huggins RA, Witschel W |
199 - 203 |
Potentiostatic Step Technique to Study Ionic Transport in Mixed Conductors Nisancioglu K, Gur TM |
204 - 208 |
Hexagonal and Pyrochlore-Type Cesium Tungstates Synthesized from Cesium Peroxo-Polytungstate and Their Intercalation Chemistry Oi J, Kishimoto A, Kudo T |
209 - 217 |
Structure, Microstructure and Transport-Properties of Mixed Ionic-Electronic Conductors Based on Bismuth Oxide .1. Bi-Y-Cu-O System Shen YS, Joshi A, Liu ML, Krist K |
218 - 223 |
Determination of Kinetic and Transport Parameters for Oxygen in Mixed Conductors by an AC Method Lade K, Jacobsen T |
224 - 231 |
Ce3+(--)Ce4+ Conversion in Ceria-Doped Zirconia Single-Crystals Induced by Oxide-Reduction Treatments Orera VM, Merino RI, Pena F |
235 - 239 |
Reduced Magnesium Titanate Electrodes for Solid Oxide Fuel-Cells Fagg DP, Fray SM, Irvine JT |
240 - 247 |
Characterization of Solid Oxide Fuel-Cell Electrodes by Impedance Spectroscopy and IV-Characteristics Vanberkel FP, Vanheuveln FH, Huijsmans JP |
248 - 252 |
Oxygen Reduction at (La0.5Sr0.5)(Y)Mno3 Thin-Films YSZ Interface Gharbage B, Pagnier T, Hammou A |
253 - 256 |
Fabrication of High-Power Density Tubular Type Solid Oxide Fuel-Cells Sasaki H, Otoshi S, Suzuki M, Sogi T, Kajimura A, Sugiura N, Ippommatsu M |
257 - 264 |
Stability of La(1-X)A(X)MnO(3-Z) (A=ca, Sr) as Cathode Materials for Solid Oxide Fuel-Cells Takeda Y, Sakaki Y, Ichikawa T, Imanishi N, Yamamoto O, Mori M, Mori N, Abe T |
265 - 270 |
Sintering of a Plasma-Derived Zirconia Powder for Solid Oxide Fuel-Cell Electrolytes Gibson IR, Lachowski EE, Irvine JT, Dransfield GP |
271 - 275 |
Development of High-Performance Electrolyte in SOFC Mizutani Y, Tamura M, Kawai M, Yamamoto O |
279 - 284 |
Microstructural Designs and Electrical-Properties of Y2O3-Doped ZrO(2)S Kim SJ, Kim KH, Oh SJ, Kang TK, Kuk IH |
285 - 288 |
Electrical-Impedance and Ultrasonic Velocity of Sodium Ionic Conductor Na1+2Xzr2-Xmgx(PO4)(3) Inoue N, Tagami M, Nakamura Y, Matsumoto Y, Ogawa Y, Hasegawa T |
289 - 292 |
Fast Na+ Ionic-Conductivity in Glass and Crystalline Solids of Na2Moo4-Uo2So4 System Huang PN, Secco EA |
293 - 299 |
Structural Study and Conductivity Properties of Ca1-Xna2Xti4(PO4)(6) Solid-Solution Mentre O, Abraham F, Deffontaines B, Vast P |
300 - 304 |
Crystal-Structure and Mixed-Alkali Effect of (K+, Cs+)-Beta-Ferrite Ito S, Nariki S, Kozawa K, Uchida T, Yoneda N |
305 - 308 |
Irreversible Conductivity Change of Ca Beta"-Alumina at High-Temperature Fafilek G, Breiter MW |
309 - 313 |
Oxide-Ion Conductivity of the New Aurivillius Phase (Bi2O2) (Nanb2O6.5) Pham AQ, Puri M, Dicarlo JF, Jacobson AJ |
314 - 317 |
Investigation on Transport-Properties of the Silver Ion Conducting Composite Electrolyte Gupta RK, Agrawal RC |
321 - 327 |
Non-Faradaic Electrochemical Modification of Catalytic Activity - Solid Electrolytes as Active Catalyst Supports Vayenas CG, Bebelis S, Yentekakis IV, Karavasilis C, Yi J |
328 - 333 |
Evaluation of Perovskite Anodes for the Complete Oxidation of Dry Methane in Solid Oxide Fuel-Cells Baker RT, Metcalfe IS, Middleton PH, Steele BC |
334 - 337 |
Tin Mordenite Membranes for Direct Methanol Fuel-Cells Rao N, Andersen TP, Ge P |
338 - 343 |
NOx Sensing Characteristics of Bi2Sr2Cacu2O8+x and Bi2Sr2Cuo6+x Films Huang XJ, Schoonman J |
344 - 348 |
Organometallic Chemical-Vapor-Deposition of Rare-Earth-Oxide Thin-Films - Application for Steel Protection Against High-Temperature Oxidation Bonnet G, Lachkar M, Larpin JP, Colson JC |