191 - 199 |
Investigation of the relationship between the ionic conductivity and the local structures of singly and doubly doped ceria compounds using EXAFS measurement Yoshida H, Deguchi H, Miura K, Horiuchi M, Inagaki T |
201 - 208 |
Oxygen migration in A(2)B(2)O(7) pyrochlores Pirzada M, Grimes RW, Minervini L, Maguire JF, Sickafus KE |
209 - 221 |
Positive electrode materials for lithium batteries based on VOPO4 Dupre N, Gaubicher J, Le Mercier T, Wallez G, Angenault J, Quarton M |
223 - 232 |
Influence of structural defects on the insertion behavior of gamma-MnO2: comparison of H+ and Li+ Jouanneau S, Sarciaux S, La Salle AL, Guyomard D |
233 - 240 |
High-pressure conductivity studies of blends of poly(p-phenylene)s with oxyethylene side-chains and lithium salts Pu HT, Meyer WH, Wegner G |
241 - 248 |
Formation of Li2O in a chemically Li-intercalated V2O5 xerogel Almeida EC, Abbate M, Rosolen JM |
249 - 255 |
Lithium insertion to ReO3-type metastable phase in the Nb2O5-WO3 system Yamada H, Hibino M, Kudo T |
257 - 261 |
Redox reaction kinetics of UO2+x Kang SH, Yoo HI, Joung CY, Lee YW |
263 - 274 |
Rare earth cuprates as electrocatalysts for methanol oxidation Raghuveer V, Thampi KR, Xanthopoulos N, Mathieu HJ, Viswanathan B |
275 - 283 |
Transport of H-2, O-2 and H2O through single-phase, two-phase and multi-phase mixed proton, oxygen ion, and electron hole conductors Virkar AV |
285 - 292 |
The effect of sintering on the grain boundary conductivity of lithium lanthanum titanates Ban CW, Choi GM |
293 - 300 |
Silver intercalation in PbS1.18(TiS2)(n), n=1, 2, misfit layer compounds Titov AN, Bryntse I, Titova SG, Toporova NV |
301 - 306 |
Oxide-ion conductivity of (Ba1-xLax)(2)In2O5+x system based on brownmillerite structure Kakinuma K, Yamamura H, Haneda H, Atake T |
307 - 311 |
Investigations on conductivity anomalies in Li2O center dot 4MnO(1+x)center dot 4B(2)O(3) glasses Wang SM, Huang XJ, Xu CL, Liang J, Chen LQ |
313 - 325 |
Characterization of CO tolerance of PEMFC by ac impedance spectroscopy Kim JD, Park YI, Kobayashi K, Nagai M, Kunimatsu M |
327 - 335 |
Poly(ethylene oxide-co-epichlorohydrin)/NaI: a promising polymer electrolyte for photoelectrochemical cells Nogueira AF, Spinace MAS, Gazotti WA, Girotto EM, de Paoli MA |
337 - 343 |
Coulometric titrations of electrolytes in water by a solid state ionic device using Nafion and Tosflex membranes Ishikawa K, Nishiara T |
345 - 351 |
Preparation and characterization of a lithium ion conducting electrolyte based on poly(trimethylene carbonate) Smith MJ, Silva MM, Cerqueira S, MacCallum JR |
353 - 359 |
Blended lithium ion conducting polymer electrolytes based on boroxine polymers Yang Y, Inoue T, Fujinami T, Mehta MA |
361 - 367 |
Polyacrylonitrile-sulfolane-CuX2 (X = Cl, Br, CF3SO3) solid polymer electrolyte Lewandowski A, Stepniak I |
369 - 374 |
Characterization of Ce1-xZrxO2 thin films prepared by pyrolytic spray technique Elidrissi B, Addou M, Regragui M, Mzerd A, Bougrine A, Kachouane A |
375 - 380 |
Thermal and complex impedance analysis of amorphous and crystalline lithium salt mixtures Dillon REA, Shriver DF |
381 - 394 |
Interfacial effects in electrochemical cells for oxygen ionic conduction measurements I. The e.m.f. method Kharton VV, Marques FMB |
395 - 403 |
Electrical properties of pure and Li2O-doped CuO/Fe2O3 system precalcined at different temperatures Turky G, Selim MS, El-Shobaky GA |