1 - 11 |
Solid-state protonic conductors: principles, properties, progress and prospects Norby T |
13 - 21 |
Hydrogen tunneling or hopping - how can we know? Bjorkstam JL |
23 - 29 |
The role of quantum effects and ionic defects in high-density ice Benoit M, Marx D, Parrinello M |
31 - 37 |
Theoretical approach for protonic conduction in perovskite-type oxides Matsushita E, Sasaki T |
39 - 45 |
A quantum molecular dynamics study of proton diffusion in SrTiO3 and CaTiO3 Munch W, Kreuer KD, Seifertli G, Majer J |
47 - 53 |
Conductivity and NMR relaxation from ionic motion in disordered glasses with distributions of barriers Svare I |
55 - 60 |
Kinetics of hydrogen-sodium ion exchange in acid zirconium phosphate Kotov VY, Stenina IA, Yaroslavtsev AB |
61 - 67 |
Application of neutron scattering methods for the study of superprotonic conductors Belushkin AV |
69 - 79 |
New proton dynamics in solids revealed by vibrational spectroscopy with neutrons Fillaux F |
81 - 90 |
Recent advances in relating macroscopic electrical relaxation data to microscopic movements of the ions in ionically conducting materials Ngai KL, Leon C |
91 - 97 |
Proton conductivity of mesoporous zirconium phosphate pyrophosphate Alberti G, Casciola M, Cavalaglio S, Vivani R |
99 - 106 |
Aging and non-ergodicity in superprotonic water non-stoichiometric phases of MzHy(AO(4)) ((z plus y)/2)center dot xH(2)O crystals Baranov AI, Yakushkin ED, Jones DJ, Roziere J |
IX - IX |
Proceedings of the 9th International Conference on Solid State Protonic Conductors Golf Hotel, Bled, Slovenia, August 17-21, 1998 - Preface Lahajnar G, Dolinsek J, Blinc R |
107 - 117 |
Proton conducting Ba3Ca1.18Nb1.82O8.73H2O: pressure-compositions isotherms in terms of Fermi-Dirac statistics, concentration and fuel-cell measurements, and impedance spectroscopy Gross B, Marion S, Lind K, Grambole D, Herrmann F, Hemplemann R |
119 - 123 |
Isotope effect in Cs5H3(SO4)(4)center dot 0.5H(2)O crystals Lushnikov SG, Belushkin AV, Beskrovnyi AI, Fedoseev AI, Gvasaliya SN, Shuvalov LA, Schmidt VH |
125 - 133 |
Electrical and IR spectroscopic studies of peroxopolytungstic acid/organic-inorganic hybrid gels Groselj N, Gaberscek M, Krasovec UO, Orel B, Drazic G, Judeinstein P |
135 - 140 |
Two-dimensional protonic conductor SnCl2 center dot 1.5 H2O comparison with SnCl2 center dot 2 H2O Pirnat J, Trontelj Z |
141 - 146 |
A comparison of Ag- and proton-conducting ferroelectrics Scott JF |
147 - 157 |
Anomalous and normal protonic conductivity in Cs1-x(NH4)(x)H2PO4, Cs1-x(ND4)(x)D2PO4, and K1-x(NH4)(x)H2PO4 Schmidt VD, Lanceros-Mendez S, Meschia SC, Pinto NJ |
159 - 162 |
Protonic conductivity in KH2PO4 family studied by NMR Dolinsek J, Karayanni M, Papavassiliou G |
163 - 169 |
Structural relaxation in superprotonic tetraammonium dihydrogen triselenate single crystals Hilczer B, Polomska M, Pawlowski A |
171 - 175 |
Domain structure and conductivity in pure and PO4-doped CsDSO4 crystals Kirpichnikova L, Pawlowski A, Polomska M, Hilczer B |
177 - 185 |
On the high-temperature phase transitions of some KDP-family compounds: a structural phase transition? A transition to a bulk-high proton conducting phase? Ortiz E, Vargas RA, Mellander BE |
187 - 192 |
On the high temperature phase behaviour of NH4H2AsO4 Vargas RA, Torijano E, Diosa JE, Mellander BE |
193 - 202 |
Disorder and protonic conductivity in RbH(SO4)(0.81)(SeO4)(0.19) mixed crystals Gargouri M, Mhiri T, Daoud A, Reau JM |
203 - 212 |
Molecular mobility and protonic conductivity in polymers: hydrogels and ionomers Pissis P, Kyritsis A, Shilov VV |
213 - 223 |
Electroosmotic drag in polymer electrolyte membranes: an electrophoretic NMR study Ise M, Kreuer KD, Maier J |
225 - 233 |
Proton-conducting polymer electrolytes based on phosphoric acid Bozkurt A, Ise M, Kreuer KD, Meyer WH, Wegner G |
235 - 241 |
Hydration and conductivity studies of polymer-water interactions in polyacrylamide hydrogels Konsta AA, Daoukaki D, Pissis P, Vartzeli K |
243 - 249 |
Synthesis and characterization of novel acid-base polymer blends for application in membrane fuel cells Kerres J, Ullrich A, Meier F, Haring T |
251 - 256 |
NMR investigations of ultraslow diffusion in incommensurate insulators and in biomedical systems (e.g. lung) Ailion DC |
257 - 261 |
Dielectric relaxation of a proton glass in hydrated protein powders Careri G, Consolini G, Bruni F |
263 - 269 |
Doping effects in p-terphenyl molecular crystals: a study by Raman spectroscopy da Costa AMA, Amado AM |
271 - 278 |
Hydrogen pumps using proton-conducting ceramics and their applications Iwahara H |
279 - 284 |
Polarization studies in the Pd vertical bar SrCe0.95Yb0.05O2.975 vertical bar Pd proton conducting solid electrolyte cell Marnellos G, Kyriakou A, Florou F, Angelidis T, Stoukides M |
285 - 302 |
Aspects of the formation and mobility of protonic charge carriers and the stability of perovskite-type oxides Kreuer KD |
303 - 311 |
Some factors that determine proton conductivity in nonstoichiometric complex perovskites Nowick AS, Du Y, Liang KC |
313 - 318 |
Conduction properties of Mg-, Fe- or Co-substituted Sr2TiO4 at elevated temperatures Shimura T, Suzuki K, Iwahara H |
319 - 323 |
Thermogravimetry of the high temperature proton conductors BaCa0.3Nb0.6Nd0.1O3-delta, SrCa(1-x)/3Nb(2-x)/3O3-x/2 and Sr(Zr0.8Ce0.2)(0.8)In0.2O3-delta Schober T, Friedrich J |
325 - 331 |
Determination of hydrogen solubility in oxide ceramics by using SIMS analyses Sakai N, Yamaji K, Horita T, Yokokawa H, Hirata Y, Sameshima S, Nigara Y, Mizusaki J |
333 - 337 |
Preliminary study on the ionic conductivity of a polyphosphate composite Cappadonia M, Niemzig O, Stimming U |
339 - 344 |
Proton and oxide ion conductivity of doped LaScO3 Lybye D, Bonanos N |
345 - 353 |
Electrochemical H-D isotope effect at metal-perovskite proton conductor interfaces Kek D, Bonanos N |
355 - 367 |
Chemical stability and proton conductivity of doped BaCeO3-BaZrO3 solid solutions Ryu KH, Haile SM |
369 - 376 |
Protons in Sr-3(Sr1+xNb2-x)O9-3x/2 perovskite Glockner R, Neiman A, Larring Y, Norby T |
377 - 381 |
Electromotive force of H-2-D-2 gas cell using high-temperature proton conductors Matsumoto H, Takeuchi K, Iwahara H |
383 - 387 |
Proton conduction in mixed perovskite-type oxides Sata N, Yugami H, Akiyama Y, Sone H, Kitamura N, Hattori T, Ishigame M |
389 - 395 |
Structural and electrical characterisation of SrCe1-xYxO xi Phillips RJ, Bonanos N, Poulsen FW, Ahlgren EO |
397 - 405 |
Intermediate temperature proton conducting salt-oxide composites Zhu B |
407 - 410 |
Proton conductivity of mesoporous MCM type of zirconium and titanium phosphates Rodriguez-Castellon E, Jimenez-Jimenez J, Jimenez-Lopez A, Maireles-Torres P, Ramos-Barrado JR, Jones DJ, Roziere J |
411 - 415 |
Dielectric investigation of magnesium salt of 12-tungstophosphoric acid hydrate Davidovic M, Cajkovski T, Cajkovski D, Likar-Smiljanic V, Biljic R, Mioc U, Nedic Z |
417 - 424 |
Structural properties and proton conductivity of the 12-tungstophosphoric acid doped aluminosilicate gels Mioc UB, Milonjic SK, Stamenkovic V, Radojevic M, Colomban P, Mitrovic MM, Dimitrijevic R |
425 - 429 |
Identification of protonic species and their dynamic equilibrium in magnesium and calcium salts of 12-tungstophosphoric acid Mioc UB, Todorovic MR, Colomban P, Nedic ZP, Uskokovic SM, Borcic ID |
431 - 437 |
Investigation of a direct methanol fuel cell based on a composite Nafion (R)-silica electrolyte for high temperature operation Antonucci PL, Arico AS, Creti P, Ramunni E, Antonucci V |
439 - 446 |
Intermediate-temperature proton-conducting fuel cells - Present experience and future opportunities Zhu B, Albinsson I, Mellander BE, Meng GY |