1 - 7 |
The Hydrothermal Synthesis of Sodium Manganese Oxide and a Lithium Vanadium-Oxide Chen RJ, Chirayil T, Zavalij P, Whittingham MS |
9 - 15 |
Proton Conducting Ceramics and Their Applications Iwahara H |
17 - 28 |
Variations on the Salt-Polymer Electrolyte Theme for Flexible Solid Electrolytes Angell CA, Xu K, Zhang SS, Videa M |
29 - 39 |
Ion Dynamics in Structurally Disordered Materials - Effects of Random Coulombic Traps Knodler D, Pendzig P, Dieterich W |
41 - 48 |
Transient-Behavior of Insertion Reaction Electrodes Huggins RA |
49 - 54 |
Performance of Bellcore Plastic Rechargeable Li-Ion Batteries Tarascon JM, Gozdz AS, Schmutz C, Shokoohi F, Warren PC |
55 - 67 |
Crystalline Solid Electrolytes and Defect Chemistry - Some Novel Thermodynamic and Kinetic Results Maier J |
69 - 72 |
Structure and Conductivity of Nayk1-Yna1.4Zr1.3Mg0.7(Po-4)(3) Solid-Solution Inoue N, Yuasa Y, Nakanishi T |
73 - 76 |
Alkali Ion Conduction in the Substituted Phase Based on the Scheelite-Type Oxide Esaka T, Kamata M, Saito H |
77 - 82 |
Structure and Ionic Transport of Pbsnf4 Superionic Conductor Denes G, Milova G, Madamba MC, Perfiliev M |
83 - 87 |
Ionic-Conduction in Anion Substituted Cubrte Beeken RB, Haase AT, Hoerman BH, Sulzer SE |
89 - 92 |
Low-Temperature Heat-Capacity of Powder and Sintered Samples of Yttria-Doped Zirconia Tojo T, Atake T, Shirakami T, Mori T, Yamamura H |
93 - 98 |
Dependence of Structure and Ionic-Conductivity on the Composition of Na+/Pr3+-Beta"-Alumina Kohler J, Urland W |
99 - 105 |
Preparation and Physical-Properties of Lithium Phosphide Lithium-Chloride, a Solid-Electrolyte for Solid-State Lithium Batteries Nazri GA, Conell RA, Julien C |
IX - X |
Solid-State Ionics-95 - Proceedings of the 10th International-Conference on Solid-State Ionics, Singapore, December 3-8, 1995 .1. Preface Chowdari BV |
107 - 111 |
The Effect of Ion Substitution in Sodium-Conducting Solid Electrolytes on the Reversibility of the Electrode-Solid Electrolyte Interface Bukun NG, Moskvina EI |
113 - 117 |
Determination of Charge Carried Concentration in Sr1-Xbixf2+x Solid-Solution from AC Conductivity Analysis Hairetdinov EF, Uvarov NF, Wahbib M, Reau JM, Jun XY, Hagenmuller P |
119 - 124 |
Synthesis and Structural and Ionic-Conductivity Studies of Na2Zrsi4O11 Vitins G, Grins J, Horlin T |
125 - 130 |
Characterization and Stability of the Fast-Ion Conductor (Bi2O3)(1-X)(PbO)(X) Sammes NM, Tompsett G, Phillips R, Carson C, Cartner AM, Fee MG, Yamamoto O |
131 - 135 |
Thermal-Stability and Ionic-Conductivity of the Bimevox.10 Ceramics (Me=zn, Ni) Kurek P, Breiter MW |
137 - 139 |
Ionic-Conductivity and Dielectric-Constant of Tl4Cdi6 Nair SM, Rafiuddin YA, Ahmad A |
141 - 146 |
On the Dynamics of Frenkel Defect Formation and Ionic Hopping in AgCl, AgBr and Beta-AgI Funke K, Wilmer D, Lauxtermann T, Holzgreve R, Bennington SM |
147 - 154 |
Pressure Studies on Some Fast Cation Conductivity Compounds Secco EA, Secco RA |
155 - 158 |
Silver Ionic Conductor Ag9Gase6 Studied by Ag and Ga NMR Tansho M, Wada H, Ishii M, Onoda Y |
159 - 163 |
Preparation, Crystal-Structure and Silver Ionic-Conductivity of the New Compound Ag8Tis6 Wada H, Ishii M, Onoda M, Tansho M, Sato A |
165 - 169 |
Influence of Site Percolation and Local Distortion on Lithium Ion Conductivity in Perovskite-Type Oxides La0.55Li0.35-Xkxtio3 and La0.55Li0.35Tio3-Kmo(3) (M=nb and Ta) Katsumata T, Matsui Y, Inaguma Y, Itoh M |
171 - 175 |
Crystal-Structure and Spectroscopic Properties of Lixni1-Ytiyo2 and Their Electrochemical-Behavior Chang SH, Kang SG, Song SW, Yoon JB, Choy JH |
177 - 182 |
Ionic-Conduction and Disorder in the Gd2Sn2O7 Pyrochlore System Yu TH, Tuller HL |
183 - 186 |
Temperature-Dependence of the Dynamical Effective Charge in Ag3Si Aniya M, Wakamura K |
187 - 191 |
Ion Conductivity Commensurate with Lattice Distortion in Ag2So4 Singh K, Anwane SW, Bhoga SS |
193 - 196 |
The Use of Sodium Beta-Alumina for Controlling the Rate of Sodium Addition to Aluminum-Alloys Doughty G, Fray DJ, Vanderpoorten C, Dekeyser J |
197 - 201 |
Oxide-Ion Conductivity in Doped Ga Based Perovskite-Type Oxide Ishihara T, Matsuda H, Binbustam MA, Takita Y |
203 - 206 |
The Effect of Oxygen Nonstoichiometry of Babi1-Xpbxo3-Delta on Electrical-Conduction Behavior Hashimoto T, Tanaka H, Hirasawa R, Tagawa H, Mizusaki J |
207 - 211 |
Systematic Study of Dielectric and Conductivity Relaxations in Yttria-Stabilized Zirconia Alloys at Lower Temperatures Chen Y, Sellar JR |
213 - 216 |
Photoemission Spectra of Na Beta-Alumina and Na Beta"-Alumina Hattori T, Kanou H, Kawaharada I, Ishigame M, Tezuka Y, Shin S |
217 - 222 |
Crystal-Structure Model of a Low-Temperature Phase (Phase-II) of Argyrodite-Family Compound Ag7Tas6 Onoda M, Wada H, Ishii M |
223 - 226 |
NMR-Study on Ionic-Conduction in Silver and Alkali-Halides Kanashiro T, Michihiro Y, Kitahara K, Yamanishi T, Kishimoto Y, Ohno T |
227 - 230 |
Diffuse Neutron-Scattering from Superionic Phase of Ag2Te Sakuma T, Aoyama T, Takahashi H, Shimojo Y, Morii Y |
231 - 234 |
Ionic-Conductivity in Copper-Dissolved Alpha-AgI Kusakabe M, Ito Y, Arai M, Shirakawa Y, Tamaki S |
235 - 239 |
Thermal-Behavior and Polymorphism of Bimevox Oxide-Ion Conductors Including the New Materials - Bi4V2O11-M M=la, Y, Mg, B Lee CK, West AR |
241 - 245 |
On the Influence of Cs(I)-Doping on the Electrical-Conductivity of Cuprous Bromide Bazan JC, Pettigrosso RS, Garcia NJ, Dristas JA |
247 - 250 |
Electric Properties of Nh4Sn2F5 Polycrystals in the Frequency-Range from 20 to 3.2-Center-Dot-10(10) Hz Murin I, Peceliunaite A, Kezionis A, Mizaras R, Orliukas A |
251 - 256 |
A Study of a Tertiary Superionic System AgI-Pbi2-CsI Selvasekarapandian S, Nalini B |
257 - 260 |
Influences of Carrier Concentration and Site Percolation on Lithium Ion Conductivity in Perovskite-Type Oxides Inaguma Y, Itoh M |
261 - 266 |
Electrical and Structural Study of Bicovox Krok F, Abrahams I, Bangobango DG, Bogusz W, Nelstrop JA |
267 - 271 |
X-Ray-Irradiation Influence on Photoluminescence of Gamma-Rbag4I5 Superionic Crystals Kovaleva N, Ionov A |
273 - 279 |
Barrier Photo-EMF Studies of Electronic-Transitions in Alpha-Rbag4I5 Boris A, Hattori T, Ishigame M |
281 - 284 |
Preparation and Characterization of Sodium Fast-Ion Conductors Na1+2X+yalxybyzr2-X-Ysixp3-Xo12 System Wang WJ, Zhang YR |
285 - 288 |
Modeling and Characterization of Mixed Ionic-Electronic Conduction in Gd-2(Ti1-Xmnx)(2)O-7+y Porat O, Spears MA, Heremans C, Kosacki I, Tuller HL |
289 - 295 |
Bi-M/M’-O (M,M’ Equals Alkaline-Earth) and Bi-M/M’-Pb-O - New Members of the Dimorphic Rhombohedral Bi-Sr-O Type Anionic Conductors Family Drache M, Wignacourt JP, Conflant P |
297 - 302 |
Local Coordination and Conformation in Polyether Electrolytes - Geometries of M-Triglyme Complexes (M=li, Na, K, Mg and Ca) from Ab-Initio Molecular-Orbital Calculations Johansson P, Gejji SP, Tegenfeldt J, Lindgren J |
303 - 306 |
Effects of SiC Fillers on the Electrical and Mechanical-Properties of (Peo)(16)Liclo4 Electrolytes Choi BK, Shin KH |
307 - 312 |
Impedance and Li-7 NMR-Studies of Polymer Electrolytes Based on Poly(Vinylidene Fluoride) Croce F, Appetecchi GB, Slane S, Salomon M, Tavarez M, Arumugam S, Wang Y, Greenbaum SG |
313 - 317 |
Fluorescence Spectroscopic Study on the Interactions Among the Components of Solid-Electrolyte Polyacrylonitrile/Dimethylformamide/Liclo4 Wang ZX, Huang BY, Huang H, Chen LQ, Xue RJ |
319 - 323 |
Characterization of H3PO4 Based PVA Complex System Gupta PN, Singh KP |
325 - 328 |
Effect of Terminal Groups on the Ionic-Conductivity of Alpha,Omega-Dicharged Poly(Ethylene Oxide) Oligomers Ito K, Nishina N, Tominaga Y, Ohno H |
329 - 332 |
Evaluation of Ag/Ag+ Electrode as a Reference Electrode for Ion Conductive Polymer Matrix Sato F, Ohno H |
333 - 336 |
Electrochemical Redox Reactions of Hemin Derivatives Having Thienylene Groups in Ion Conductive Peo Oligomers Ohtaki H, Kawahara NY, Ohno H |
337 - 340 |
Electron-Transfer of Peo-Modified Cytochrome-C in Peo Oligomers Kurusu F, Kawahara NY, Ohno H |
341 - 346 |
Effect of Plasticizers on High-Molecular-Weight Peo-Licf3So3 Complexes Chintapalli S, Frech R |
347 - 351 |
New Lithium-Based Polyethylene Oxide-Glass Solid Electrolytes Mustarelli P, Quartarone E, Tomasi C, Magistris A |
353 - 356 |
Conductivity Study on Ionic Liquid/Polymer Complexes Watanabe M, Mizumura T |
357 - 362 |
Modeling the AC Conductivity Behavior of Composite Polymeric Electrolytes by the Effective-Medium Theory Wieczorek W, Zalewska A, Siekierski M, Przyluski J |
363 - 367 |
A Fractal Model for Superionic Aerogels Roy S, Dasgupta R, Tarafdar S |
369 - 372 |
Metal-Ion Coordination in Polymer Gel Electrolytes Bernson A, Lindgren J |
373 - 377 |
Sodium Metasilicate Based Proton Conducting Gels Rai DK, Chandra S |
379 - 384 |
Raman and NMR Analysis of Liclo4 Concentrated-Solutions in Ethylene Carbonate Propylene Carbonate Cazzanelli E, Mustarelli P, Benevelli F, Appetecchi GB, Croce F |
385 - 393 |
Transport and Electrochemical Characterization of Plasticized Poly(Vinyl Chloride) Solid Electrolytes Sukeshini AM, Nishimoto A, Watanabe M |
395 - 400 |
Vibrational Spectroscopic and Electrochemical Studies of the Low and High-Temperature Phases of Lico(1-X)M(X)O(2) (M=ni or Ti) Huang WW, Frech R |
401 - 405 |
Effects of Crown-Ethers on the Electrochemical Properties of Polymeric Solid Electrolytes Consisting of Poly(Ethylene Oxide)-Grafted Poly(Methylmethacrylates) Morita M, Tanaka H, Ishikawa M, Matsuda Y |
407 - 413 |
Lithium Intercalation Studies in Hydrated Molybdenum Oxides Guzman G, Yebka B, Livage J, Julien C |
415 - 420 |
Preparation and Characterization of Alpha-AgI Frozen Superionic Glasses Minami T, Saito T, Tatsumisago M |
421 - 424 |
Changes in the Structure of AgI-Agpo3 Around the Glass-Transition Temperature Matic A, Borjesson L, Wannberg A, Mcgreevy RL |
425 - 430 |
Hydrostatic-Pressure Effects on AC Conductivity of the Agpo3 and (Ag2S)(0.3)(Agpo3)(0.7) Superionic Glasses Fanggao C, Saunders GA, Wei Z, Cutroni M, Mandanici A, Piccolo A |
431 - 440 |
Raman and FTIR Studies of Complex-Formation in Aluminum Trichloride-Alkali Thiocyanate Ambient-Temperature Molten-Salt Solutions Liu CL, Teeters D, Potter W, Tapp B, Sukkar MH |
441 - 446 |
Self-Diffusion of Ag+ Ions in AgI-Ag2O-V2O5 Glassy System Kumar RS, Hariharan K, Dhanabalan M, Reddy KV |
447 - 451 |
Mixed Former Effect in Sodium Phospho Tellurate Glasses Jayasinghe GD, Bandaranayake PW, Souquet JL |
453 - 458 |
Temperature-Dependence of Ionic Carrier Concentration and Mobility in the Silver Borate Glasses Shaju KM, Chandra S |
459 - 462 |
An Investigation of Superionic Conduction in the Mixed System Ag1-Xcuxi-Ag2O-P2O5 (0.05-Less-Than-or-Equal-to-X-Less-Than-or-Equal-to-0.25) Seydei MK, Suthanthiraraj SA |
463 - 466 |
Thermal Transport Near Glass-Transition in AgI-Agpo3 Glasses Hiki Y, Takahashi H, Kogure Y |
467 - 473 |
Phase-Equilibria, High-Conductivity Ambient-Temperature Liquids, and Glasses in the Pseudo-Halide Systems AlCl3-Mscn (M=li, Na, K) Liu CL, Angell CA |
475 - 479 |
Li-6.7 and F-19 NMR-Studies of Xlif-Center-Dot(1-X)Lipo3 Glasses Berger S, Roos J, Brinkmann D, Chowdari BV |
481 - 486 |
Ionic and Polaronic Hopping in Glass Cramer C, Funke K, Roling B, Saatkamp T, Wilmer D, Ingram MD, Pradel A, Ribes M, Taillades G |
487 - 490 |
Structure and Properties of Lithium Ion Conducting Oxysulfide Glasses Prepared by Rapid Quenching Tatsumisago M, Hirai K, Hirata T, Takahashi M, Minami T |
491 - 495 |
Ionic Conductivities of Rapidly Quenched AgI-Ag2O-B2O3 Glasses Containing Large Amounts of AgI Saito T, Torata N, Tatsumisago M, Minami T |
497 - 501 |
Conductivity Anomalies in Tungstate-Phosphate Glasses - Evidence for an Ion-Polaron Interaction Bazan JC, Duffy JA, Ingram MD, Mallace MR |
503 - 509 |
Investigations on Silver-Iodide Silver Oxysalt Glass-Ceramics Adams S, Hariharan K, Maier J |
511 - 516 |
Synthesis and Conduction Properties of Na+ Superionic Conductors of Sodium Samarium Silicophosphates Okura T, Tanaka M, Kanzawa H, Sudoh G |
517 - 520 |
Intermediate Range Structure of Organic-Inorganic Mixed Superionic Conductor Glasses - AgI and Tetraalkylammonium Iodides Kawamura J, Itagaki T, Arakawa K, Kamiyama T, Nakamura Y |
521 - 526 |
Synthesis and Characterization of Silver Borotellurite Glasses Chowdari BV, Kumari PP |
527 - 533 |
The Influence of Bi2O3 on Yli(2)O-Center-Dot(1-Y)(Xbi(2)O(3)(1-X)B2O3) Glass System Chowdari BV, Rong Z |
535 - 538 |
Solid-State NMR-Spectra of Rapidly Quenched Superionic Glasses Composed of 2 Lithium Ortho-Oxosalts Takahashi M, Toyuki H, Tatsumisago M, Minami T |
539 - 542 |
Preparation of Li6Si2S7-Li(6)B(4)X(9) (X=s, O) Glasses by Rapid Quenching and Their Lithium Ion Conductivities Hayashi A, Hirai K, Tatsumisago M, Takahashi M, Minami T |
543 - 546 |
Investigation of Sol-Gel Route in the Synthesis of Lithium Ion Conducting Glasses Satyanarayana N, Muralidharan P, Patcheammalle R, Venkateswarlu M, Rao GV |
547 - 557 |
Dynamics in a Poly(Ethylene Oxide)-Based Nanocomposite Polymer Electrolyte Probed by Solid-State NMR Wong S, Vaia RA, Giannelis EP, Zax DB |
559 - 563 |
Characterization of Lead Fluoride Deposited Within Micropores of Porous Alumina Nagai M, Nishino T |
565 - 568 |
Effects of Physical-Properties of (Ba,Pb)TiO3 Particles on the Ionic-Conductivity Enhancement in NASICON Based Composite Solid Electrolytes Takeuchi T, Ado K, Saito Y, Tabuchi M, Okuyama H, Nakamura O |
569 - 572 |
Oxygen Permeation Through Oxygen-Ion Oxide-Noble Metal Dual-Phase Composites Chen CS, Kruidhof H, Bouwmeester HJ, Verweij H, Burggraaf AJ |
573 - 576 |
High Ionic-Conductivity and Unusual Thermodynamic Properties of Silver-Iodide in AgI-Al2O3 Nanocomposites Uvarov NF, Hairetdinov EF, Bokhonov BB, Bratel NB |
577 - 580 |
Composite Solid Electrolytes Meno(3)-Al2O3 (Me=li, Na, K) Uvarov NF, Hairetdinov EF, Skobelev IV |
581 - 584 |
Conductivity Enhancement of CaF2 by Grain-Boundary Activation with Lewis-Acids Saito Y, Maier J |
585 - 588 |
Composition Effects on Na+-Ion Conduction Properties and Structure of Narpsio Glass-Ceramics Yamashita K, Kakuta T, Sakurai B, Umegaki T |
589 - 593 |
Polymer-Ceramic Ion-Conducting Composites Nairn K, Forsyth M, Every H, Greville M, Macfarlane DR |
595 - 602 |
Effect of Dispersion of CeO2 in the Ionic-Conductivity of Li2Mncl4 Jacob MM, Rajendran S, Gangadharan R, Michael MS, Prabaharan SR |
603 - 607 |
Reduction of Nitrogen-Oxide by a Steam Electrolysis Cell Using a Proton Conducting Electrolyte Kobayashi T, Morishita S, Abe K, Iwahara H |
609 - 611 |
H-1 MAS NMR-Study of Protonic Conduction in Layered Hnbwo6-Center-Dot-Xh(2)O (X=1.5, 0.5) Binesh N, Bhat V, Bhat SV |
613 - 620 |
Water Solubility, Proton and Oxygen Diffusion in Acceptor-Doped Baceo3 - A Single-Crystal Analysis Kreuer KD, Dippel T, Baikov YM, Maier J |
621 - 628 |
Quasi-Elastic Thermal-Neutron Scattering Experiment on the Proton Conductor Srce0.95Yb0.05H0.02O2.985 Matzke T, Stimming U, Karmonik C, Soetratmo M, Hempelmann R, Guthoff F |
629 - 632 |
Optical-Absorption Spectra of Acceptor-Doped Srzro3 and SrTiO3 Perovskite-Type Proton Conductors Sata N, Ishigame M, Shin S |
633 - 638 |
An Optical in-Situ Study of Baceo3 at High-Temperatures He T, Ehrhart P |
639 - 645 |
Investigation of N-Type Electronic Defects in the Protonic Conductor Srce1-Xyxo3-Delta Reichel U, Arons RR, Schilling W |
647 - 652 |
A Quantum Molecular-Dynamics Study of Proton Conduction Phenomena in Baceo3 Munch W, Seifert G, Kreuer KD, Maier J |
653 - 658 |
Defect Model of Proton Insertion into Oxides Schober T, Schilling W, Wenzl H |
659 - 663 |
Proton Conductive Perovskite Solid-Solutions with Enhanced Mechanical Stability Matzke T, Cappadonia M |
665 - 668 |
Mechanism of Protonic Conduction in Defect Pyrochlore Hnbwo6.Xh(2)O Using MAS NMR Binesh N, Bhat V, Bhat SV |
669 - 672 |
Heat-Capacity and Phase-Behavior in (NH4)(2)HPO4 and (NH4)(2)Haso4 Vargas RA, Coral EE |
673 - 677 |
High Proton Mobility in Hydrogenated Yttrium-Barium Cuprate with Both Normal and Increased Oxygen-Content (H2M+hba2Ycu3O6.5+m+d, M=0 1 2, H-Greater-Than-or-Equal-to-0, D-Less-Than-or-Equal-to-1) Baikov YM, Nikitin SE |
679 - 683 |
Microstructure of Ca-Doped Barium Cerate Electrolytes Bace1-Xcaxo3-Alpha (X=0, 0.02, 0.05, 0.10 and 0.15) Flint SD, Hartmanova M, Jones JS, Slade RC |
685 - 689 |
Ionic-Conduction in Pyrochlore-Type Oxides Containing Rare-Earth Elements at High-Temperature Shimura T, Komori M, Iwahara H |
691 - 701 |
Perovskite Cathodes for Solid Oxide Fuel-Cells Based on Ceria Electrolytes Godickemeier M, Sasaki K, Gauckler LJ, Riess I |
703 - 709 |
Surface Exchange of Oxygen in Mixed Conducting Perovskite Oxides Kilner JA, Desouza RA, Fullarton IC |
711 - 717 |
SrTiO3 as a Prototype of a Mixed Conductor - Conductivities, Oxygen Diffusion and Boundary Effects Noll F, Munch W, Denk I, Maier J |
719 - 724 |
Novel Lisicon Mixed Conductors, Li4-2Xcoxgeo4 Sumathipala HH, Dissanayake MA, West AR |
725 - 731 |
Electrochemical Determination of Oxygen Stoichiometry and Entropy in Oxides Zachauchristiansen B, Jacobsen T, Skaarup S |
733 - 737 |
Mixed Conductivity in Metal-Doped Bismuth-Lead Oxide Fee MG, Long NJ |
739 - 744 |
Oxygen Permeability in ZrO2-CeO2-MgO at High-Temperatures Nigara Y, Kosaka Y, Kawamura K, Mizusaki J, Ishigame M |
745 - 750 |
Crystal-Structure and Electric-Conductivity of K+-Beta-Ferrite with Ideal Composition Kfe11O17 Ito S, Kurosawa H, Akashi K, Michiue Y, Watanabe M |
751 - 755 |
Nonstoichiometry (Delta) of (Mgxfe1-X)(3-Delta)O-4 Ferrite Spinel Kang SH, Yoo HI |
757 - 760 |
A New Experiment to Measure the Ionic Charge-of-Transport of a Mixed Conductor Oxide Lee KC, Yoo HI |
761 - 766 |
Phase-Transition and Cluster Formation in Silver Selenide Kumashiro Y, Ohachi T, Taniguchi I |
767 - 772 |
The Effect of Thermal-Treatment on the Resistance of Lscf Electrodes on Gadolinia Doped Ceria Electrolytes Waller D, Lane JA, Kilner JA, Steele BC |
773 - 778 |
Electronic Conductivity of MgO-Doped Na-Beta-Alumina - A Reevaluation Nafe H, Sun CW |
779 - 784 |
Polarization Studies on Mixed Conductors with Comparable Ionic and Electronic Conductivities Employed in Asymmetric Electrochemical-Cells Preis W, Sitte W |
785 - 789 |
Study of Li(3-X)M(X)N (M-Co,Ni or Cu) System for Use as Anode Material in Lithium Rechargeable Cells Shodai T, Okada S, Tobishima S, Yamaki J |
791 - 796 |
Neutron-Diffraction Study of the Layered Li0.5-Xni1+xo2 Hirano A, Kanno R, Kawamoto Y, Oikawa K, Kamiyama T, Izumi F |
797 - 803 |
Na-23-NMR Studies of Naxcoo2 Cathode Materials Stallworth P, Greenbaum S, Ma Y, Ding L, Doeff M, Visco S |
805 - 809 |
New Ternary Li-Mn-O Compounds Capable of Reversible Li Intercalation Andriiko AA, Nyrkova LI, Chmilenko NA, Rudenok PV, Kuzminskii YV |
811 - 818 |
Structural Effects of Sodium Extraction on Naxfexti2-xO4 Single-Crystals Kuhn A, Garciaalvarado F, Moran E, Alariofranco MA, Amador U |
819 - 824 |
Polyaniline Cathode Material for Lithium Batteries Yang LL, Qiu WH, Liu QG |
825 - 831 |
Electrochemical Oxygen Intercalation in La2Nio4+delta Crystals Bhavaraju S, Dicarlo JF, Scarfe DP, Jacobson AJ, Buttrey DJ |
833 - 839 |
Carbon Materials - Structure, Texture and Intercalation Inagaki M |
841 - 847 |
The Mechanism of Electrodeposition and Operation of Ni(Oh)(2) Layers Wohlfahrtmehrens M, Oesten R, Wilde P, Huggins RA |
849 - 851 |
Lithium Insertion into M(2+)-V2O5 Bronzes (M=ni,Mn,Co,Cu) Inagaki M, Omori K, Tsumura T, Shimizu A |
853 - 857 |
New Process for the Preparation of Vanadium-Oxide Xerogels Inagaki M, Watanabe TA, Shimizu A |
859 - 863 |
Physical-Properties of the de-Lithiated Li2-Xruo3 with the Layered Structure Kobayashi H, Kanno R, Kawamoto Y, Tabuchi M, Nakamura O |
865 - 871 |
Fe3O4 as Part of the Passive Layer on Iron Rahner D |
873 - 876 |
Modified Au/YSZ Electrodes - Preparation, Characterization and Electrode Behavior at Higher Temperatures Thiemann S, Hartung R, Wulff H, Klimke J, Mobius HH, Guth U, Schonauer U |
877 - 882 |
Solid-State Lithium Battery with Oxysulfide Glass Takada K, Aotani N, Iwamoto K, Kondo S |
883 - 889 |
Review of the Zebra Battery System-Development Vanzyl A |
891 - 896 |
Intercalation Materials for Lithium Rechargeable Batteries Rahner D, Machill S, Schlorb H, Siury K, Kloss M |
897 - 902 |
Dynamically Compacted Rechargeable Ceramic Lithium Batteries Jak MJ, Kelder EM, Stuivinga M, Schoonman J |
903 - 906 |
Lithium-Ion Rechargeable Battery with Petroleum Coke Anode and Polyaniline Cathode Qiu WH, Zhou RQ, Yang LL, Liu QG |
907 - 909 |
Chemical Diffusion-Coefficients of Lithium in Lim(Y)Mn(2-Y)O(4) (M=co and Cr) Wakihara M, Li GH, Ikuta H, Uchida T |
911 - 917 |
A Study of Cokes Used as Anodic Materials in Lithium Ion Rechargeable Batteries Ma SH, Li J, Jing XB, Wang FS |
919 - 924 |
The Effect of Carbonizing Conditions on the Capacity of Carbon Anodes Derived from Poly(P-Phenylene) Wang SJ, Zhang Y, Yang LL, Liu QG |
925 - 930 |
Reactive Interaction Between Surfaces of Lithium Metal and Electrolyte Components Rahner D, Machill S, Siury K |
931 - 934 |
Determination of the Thermodynamic Parameters of Zn/60Li(2)So(4)40Li(2)Co(3)/V2O5-P2O5 Electrochemical-Cells Singh K, Bhoga SS, Thorat NH |
935 - 942 |
Sol-Gel Chemistry and Electrochemical Properties of Vanadium-Oxide Gels Livage J |
943 - 948 |
Electrochromism of W-Oxide-Based Thin-Films - Recent Advances Azens A, Hjelm A, Lebellac D, Granqvist CG, Barczynska J, Pentjuss E, Gabrusenoks J, Wills JM |
949 - 953 |
Influence of Film Processing Temperature on the Electrochromic Properties of Electrodeposited Nickel-Hydroxide Natarajan C, Ohkubo S, Nogami G |
955 - 958 |
Electrochromism in Nickel-Oxide Films Prepared by Plasma Oxidation of Nickel-Carbon Composite Films Murai K, Mihara T, Mochizuki S, Tamura S, Sato Y |
959 - 964 |
Polymer Electrolytes for Electrochromic Window Applications Macfarlane DR, Sun J, Forsyth M, Bell JM, Evans LA, Skyrabin IL |
965 - 970 |
Parasitic Currents in Electrochromic Devices Michalak FM, Owen JR |
971 - 976 |
Electrochromic Nickel-Oxide Thin-Films Deposited Under Different Sputtering Conditions Ferreira FF, Tabacniks MH, Fantini MC, Faria IC, Gorenstein A |
977 - 981 |
Lithium Insertion in Sputtered Amorphous Molybdenum Thin-Films Gorenstein A, Scarminio J, Lourenco A |
983 - 985 |
Electrochromism of Copper Phthalocyanine Thin-Films Bakkush M, Salleh MM, Yahaya M, Abutalib I |
987 - 993 |
Prospect and Problems of Solid Electrolyte-Based Oxygenic Gas Sensors Yamazoe N, Miura N |
995 - 1000 |
Solid-State Humidity Sensors Greenblatt M, Shuk P |
1001 - 1004 |
Lacunar Pyrochlore-Type Tungsten-Oxides as Humidity-Sensing Materials Li YJ, Tsai PP |
1005 - 1011 |
Role of Potassium-Ions in Humidity Sensitivity of K+-Beta-Ferrite Ito S, Washio M, Makino I, Koura N, Akashi K |
1013 - 1016 |
Development and Testing of HCl-Gas Sensor for Flue-Gas Monitoring Ahmed NN, Kale GM, Kumar RV, Fray DJ |
1017 - 1021 |
Thermodynamic Equilibria and Kinetic Reversibility of the Solid Electrolyte/Electron Conductor/Gas Boundary at Low-Temperature Dobrovolsky Y, Leonova L, Vakulenko A |
1023 - 1026 |
Applications of Ferro Sensor in Nickel Matte Smelting Hong YR, Wang P, Mao YW, Li FS, Li LS |
1027 - 1031 |
Distribution of Oxygen Potential in ZrO2-Based Solid-Electrolyte and Selection of Reference Electrode of Oxygen Sensor Li FS, Tang YH, Li LF |
1033 - 1035 |
Preparation of Zirconia Tubes with High-Strength and High Thermal-Shock Resistance Qiu ST, Zhang ZS, Xu JY |
1037 - 1043 |
The Development of High-Temperature Electrochemical Sensors for Metallurgical Processes Liu QG |
1045 - 1054 |
The Use of Solid Electrolytes as Sensors for Applications in Molten Metals Fray DJ |
1055 - 1062 |
Fast CO2-Selective Potentiometric Sensor with Open Reference Electrode Holzinger M, Maier J, Sitte W |
1063 - 1067 |
A Bielectrolyte Solid-State Sensor Which Detects SO3 Independently of O-2 - Implications for a SO2 Sensor Slater DJ, Kumar RV, Fray DJ |
1069 - 1073 |
Stabilized Zirconia-Based Sensor Using Oxide Electrode for Detection of NOx in High-Temperature Combustion-Exhausts Miura N, Kurosawa H, Hasei M, Lu GY, Yamazoe N |
1075 - 1078 |
Oxygen Partial-Pressure Measurements Under More Demanding Conditions Riess I, Porat O |
1079 - 1085 |
A Wide-Range Air-Fuel Ratio Sensor with a Plate-Type Structure Kim BK, Lee JH, Kim H |
1087 - 1093 |
Limiting Current Characteristics with Regard to Oxygen and Carbon-Monoxide in Oxidizing and Reducing Atmospheres Lee JH, Kim H, Kim BK |
1095 - 1099 |
Performance Evaluation of Sox (X=2,3) Gas Sensors Using Ag-Beta"-Alumina Solid-Electrolyte Yang PH, Yang JH, Chen CS, Peng DK, Meng GY |
1101 - 1105 |
Solid-State Sensor for Measuring Antimony in Nonferrous Metals Kale GM, Davidson AJ, Fray DJ |
1107 - 1110 |
Investigation into an Improved Design of CO2 Sensor Kale GM, Davidson AJ, Fray DJ |
1111 - 1114 |
Evaluation of Basno3 and Ba(Zr,Sn)O-3 Solid-Solutions as Semiconductor Sensor Materials Jayaraman V, Mangamma G, Gnanasekaran T, Periaswami G |
1115 - 1120 |
New Metal-Oxide-Type pH Sensors Shuk P, Ramanujachary KV, Greenblatt M |
1121 - 1124 |
High-Temperature pH Sensitivities of Stabilized Zirconia Films and Ceria Ceramics Inda Y, Yamashita K, Umegaki T, Greenblatt M |
1125 - 1130 |
Improvement of the Thermal-Shock Resistance of Beta-Al2O3 Ceramics for Sensor Applications Stephen R, Vangrnderbeek J, Buekenhoudt A, Luyten J, Deschutter F |
1131 - 1149 |
Metastable-Stable Phase-Diagrams in the Zirconia-Containing Systems Utilized in Solid-Oxide Fuel-Cell Application Yashima M, Kakihana M, Yoshimura M |
1151 - 1160 |
Kinetic and Geometric Aspects of Solid Oxide Fuel-Cell Electrodes Mogensen M, Skaarup S |
1161 - 1165 |
Thermodynamic Representation of Nonstoichiometric Lanthanum Manganite Yokokawa H, Horita T, Sakai N, Dokiya M, Kawada T |
1167 - 1172 |
Microwave Sintering of Zirconia-Yttria Electrolytes and Measurement of Their Ionic-Conductivity Ciacchi FT, Nightingale SA, Badwal SP |
1173 - 1178 |
Thermoelectric-Power and Electrical-Conductivity of Strontium-Doped Lanthanum Manganite Ahlgren EO, Poulsen FW |
1179 - 1185 |
The Relationship Between Overpotential and the 3-Phase Boundary Length Fukunaga H, Ihara M, Sakaki K, Yamada K |
1187 - 1190 |
Gd1-Xsrxcoo3 for the Electrode of Solid Oxide Fuel-Cells Takeda Y, Ueno H, Imanishi N, Yamamoto O, Sammes N, Phillipps MB |
1191 - 1195 |
Cathodic Reaction-Mechanism for Dense Sr-Doped Lanthanum Manganite Electrodes Endo A, Ihara M, Komiyama H, Yamada K |
1197 - 1201 |
Oxygen Tracer Diffusion-Coefficient of (La,Sr)Mno3+/-Delta Yasuda I, Ogasawara K, Hishinuma M, Kawada T, Dokiya M |
1203 - 1209 |
Oxidation Mechanism and Effective Anode Thickness of SOFC for Dry Methane Fuel Abudula A, Ihara M, Komiyama H, Yamada K |
1211 - 1216 |
A Mathematical-Model of the Porous SOFC Cathode Svensson AM, Sunde S, Nisancioglu K |
1217 - 1222 |
SOFC Cathode Kinetics Investigated by the Use of Cone-Shaped Electrodes - The Effect of Polarization and Mechanical Load Odgaard M, Skou E |
1223 - 1234 |
Survey of Materials Selection for Ceramic Fuel-Cells .2. Cathodes and Anodes Steele BC |
1235 - 1239 |
Materials, Interfaces and Production Techniques for Planar Solid Oxide Fuel-Cells Schafer W, Koch A, Heroldschmidt U, Stolten D |
1241 - 1244 |
Solid Oxide Fuel-Cells Based on Ce(Gd)O-2-X Electrolytes Zheng K, Steele BC, Sahibzada M, Metcalfe IS |
1245 - 1249 |
Power-Generation and Steam Electrolysis Characteristics of an Electrochemical-Cell with a Zirconia-Based or Ceria-Based Electrolyte Eguchi K, Hatagishi T, Arai H |
1251 - 1254 |
Preparation of Hollow YSZ Fiber by Electrochemical Vapor-Deposition Mineshinge A, Inaba M, Ogumi Z, Takahashi T, Kawagoe T, Tasaka A, Kikuchi K |
1255 - 1258 |
Low-Temperature Fabrication of (Y,Gd,Sm)-Doped Ceria Electrolyte Vanherle J, Horita T, Kawada T, Sakai N, Yokokawa H, Dokiya M |
1259 - 1266 |
Characterization of Ceria Coated YSZ by a Platinum Point Electrode in H-2-H2O Atmosphere Horita T, Sakai N, Yokokawa H, Dokiya M, Kawada T |
1267 - 1272 |
Partial Oxidation of Methane for Internally Reformed Solid Oxide Fuel-Cell Hiei Y, Ishihara T, Takita Y |
1273 - 1278 |
Oxygen Permeation Measurement of La1-Xcaxcro3-Delta by Using an Electrochemical Method Sakai N, Horita T, Yokokawa H, Dokiya M, Kawada T |
1279 - 1284 |
Rechargeable Lithium Thin-Film Cells with Inorganic Electrolytes Yamaki J, Ohtsuka H, Shodai T |
1285 - 1289 |
Solid-State Supercapacitors Using Gel Membranes as Electrolytes Panero S, Clemente A, Spila E |
1291 - 1294 |
A Microfabricated Solid-State Secondary Li Battery Jones SD, Akridge JR |
1295 - 1299 |
Lithium Intercalation Dynamics of Spin-Coated Amorphous Mo0.5V0.5O2.75 Thin-Film Li YM, Kudo T |
1301 - 1306 |
Electrostatic Spray Deposition of Thin-Layers of Cathode Materials for Lithium Battery Chen CH, Kelder EM, Jak MJ, Schoonman J |
1307 - 1310 |
Fabrication of Proton Conductor Srceo3 Thin-Films by Excimer-Laser Deposition Yugami H, Naito H, Arashi H, Ishigame M |
1311 - 1317 |
A Unified Site Relaxation Model for Ion Mobility in Glassy Materials Bunde A, Funke K, Ingram MD |
1319 - 1323 |
Kinetics of Relaxation Process of Hopping Ionic-Conduction in Lattice-Gas Models Sato H, Datta A, Ishikawa T |
1325 - 1329 |
Ion Conduction in One-Dimensional Ionic Conductor Csxga8Ga8+xti16-Xo56 Single-Crystal Yoshikado S, Funatomi H, Taniguchi I, Watanabe M, Onoda Y, Fujiki Y |
1331 - 1334 |
Non-Debye Behaviors of Dynamic Conductivity in a Superionic Conductor Superlattice Ishii T, Abe T |
1335 - 1342 |
Novel and/or Improved Experimental-Techniques for the Studies of Bulk and Interfacial Properties of Solid Electrolytes Mizusaki J |
1343 - 1350 |
Transmission Electron-Microscopy of Carbons for Lithium Intercalation Kinoshita K, Bonevich J, Song XY, Tran TD |
1351 - 1356 |
Point Contacts in Solid-State Ionics - Finite-Element Calculations and Local Conductivity Measurements Fleig J, Maier J |
1357 - 1363 |
Electrochemical-Cell for Composition Dependent Measurements of Chemical Diffusion-Coefficients, Ionic and Electronic Conductivities of Mixed Conductors and Application to Silver Telluride at 300-Degrees-C Rom I, Preis W, Sitte W |
1365 - 1370 |
Conductivity and NMR Properties of Plasticized Polyethers Complexed with Lithium-Salts Forsyth M, Garcia M, Macfarlane DR, Ng S, Smith ME, Strange JH |
1371 - 1378 |
Spectroelectrochemical Studies of Alkali-Metal Generation from Solid-State Cells Roy SC, Bruce PG |
1379 - 1384 |
Relaxation of the Potential of Superionic Systems Sensible to Hydrogen Concentration Ukshe A, Leonova L |
1385 - 1389 |
Determination of Oxygen Diffusivity in Tetragonal YBa2Cu3Ox Using a Solid-State Electrochemical Method Porat O, Rosenstock Z, Shtreichman I, Riess I |
1391 - 1395 |
Study on Diffusion of Iron in Iron Tellurides by Mossbauer-Spectroscopy Tsuji T, Magara M |
1397 - 1402 |
Solid-State NMR Characterization of Lithium Conducting Ceramics Nairn KM, Forsyth M, Greville M, Macfarlane DR, Smith ME |
1403 - 1407 |
Impedance Spectroscopic Analysis of Crystalline Solid Electrolytes in the Mixed System (Cui)(100-X) (Ag4P2O7)(X) (0-Less-Than-or-Equal-to-X-Less-Than-or-Equal-to-60) Gogulamurali N, Suthanthiraraj SA, Maruthamuthu P |
1409 - 1413 |
Combination of AC-Impedance Spectroscopy and Short-Circuiting Measurements Applied on YBa2Cu3O7-Delta Jak MJ, Riess I, Schoonman J |
1415 - 1419 |
Automated Device for Electrochemical Measurements and Application to the System Pt/Solid Electrolyte Fafilek G, Leeb K, Breiter MW |
1421 - 1425 |
Gibbs Energy of Formation of Cu(2)R(2)O(5) (R=dy,Ho,Er,Yb) from Component Oxides Employing Solid Oxide Electrochemical-Cells Kale GM, Kumar RV, Fray DJ |
1427 - 1430 |
Phase-Equilibria in the System Bi2O3-Y2O3 - No Possibility of Delta-Bi2O3 Stabilization Watanabe A |
1431 - 1435 |
Oxygen Doping in Srfe1-Xcoxo3 Perovskite Oxides by the Electrochemical Method Okazoe C, Takeda Y, Imanishi N, Yamamoto O, Takano M, Kanno R |
1437 - 1442 |
Anion Clustering and Fractal Pattern Growth in Ion Conducting Polymeric Matrix Chandra A |
1443 - 1449 |
Synthesis of Hexagonal Form of Tungsten Trioxide and Electrochemical Lithium Insertion into the Trioxide Kumagai N, Kumagai N, Umetzu Y, Tanno K, Pereiraramos JP |
1451 - 1456 |
Electrode Polarization and Electrical-Properties of the La(0.6)Sr(0.4)Co(0.8)Fe(0.2)0(3-Delta), O-2/Yttria Stabilized Zirconia Interface - Effect of Gas-Phase Composition and Temperature Tsiakaras P, Marnellos G, Athanasiou C, Stoukides M, Tenelshof JE, Bouwmeester HJ, Verweij H |