199 - 205 |
Synthetic optimization of orthorhombic LiMnO2 by emulsion-drying method and cycling behavior as cathode material for Li-ion battery Myung ST, Komaba S, Kumagai N |
207 - 221 |
Oxygen self-diffusion in single-crystal MgO: secondary-ion mass spectrometric analysis with comparison of results from gas-solid and solid-solid exchange Yoo HI, Wuensch BJ, Petuskey WT |
223 - 228 |
Silica poisoning of oxygen membranes Viitanen MM, von Welzenis RG, Brongersma HH, van Berkel FPF |
229 - 243 |
Perovskite-like system (Sr,La)(Fe,Ga)O3-delta: structure and ionic transport under oxidizing conditions Kharton VV, Shaulo AL, Viskup AP, Avdeev M, Yaremchenko AA, Patrakeev MV, Kurbakov AI, Naumovich EN, Marques FMB |
245 - 254 |
A semi-empirical equation for oxygen nonstoichiometry of perovskite-type ceramics Yang ZH, Lin YS |
255 - 261 |
The relationship between crystal structure and electrical conductivity in the LaY1-xInxO3 (x=0.0-0.7) system Yamamura H, Yamazaki K, Kakinuma K, Nomura K |
263 - 279 |
Resolution of conflicting views concerning frequency-response models for conducting materials with dispersive relaxation, and isomorphism of macroscopic and microscopic models Macdonald JR |
281 - 290 |
Ionic conduction and dielectric relaxation in Ag+/Na+ ion-exchanged aluminosilicate glasses: mixed mobile ion effect and KWW relaxation Yano T, Nagano T, Lee J, Shibata S, Yamane M |
291 - 294 |
Thermal vibration in superionic conducting glass 5Agl-3Ag(2)O-2V(2)O(5) Thazin A, Arai M, Sakuma T, Takahashi H |
295 - 308 |
Sol-gel preparation and characterisation of dense proton conducting Sr3CaZr0.5Ta1.5O8.75 thin films Savaniu C, Irvine JTS |
309 - 315 |
Proton conductivity of phosphoric acid derivative of fullerene Li YM, Hinokuma K |
317 - 326 |
Synthesis, characterization and electrochemical properties of poly(methyl methacrylate)-grafted-poly(vinylidene fluoride-hexafluoropropylene) gel electrolytes Liu Y, Lee JY, Hong L |
327 - 335 |
Polyacrylonitrile electrolytes 1. A novel high-conductivity composite polymer electrolyte based on PAN, LiClO4 and alpha-Al2O3 Chen-Yang YW, Chen HC, Lin FJ, Chen CC |
337 - 345 |
Effect of branching in base polymer on ionic conductivity in hyperbranched polymer electrolytes Itoh T, Ichikawa Y, Hirata N, Uno T, Kubo M, Yamamoto O |
347 - 353 |
A higher conductivity Bi2O3-based electrolyte Jiang NX, Wachsman ED, Jung SH |
355 - 361 |
Polymer electrolyte plasticized with PEG-borate ester having high ionic conductivity and thermal stability Kato Y, Hasumi K, Yokoyama S, Yabe T, Ikuta H, Uchimoto Y, Wakihara M |
363 - 372 |
Ionic conduction properties of layer-type oxides (NaxMx/2Ti1-x/2O2)-Ti-II-O-IV (M=Ni, Co; 0.60 <= x <= 1.0) Shin YJ, Park MH, Kwak JH, Namgoong H, Han OH |
373 - 382 |
Current-voltage characteristic of BaTiO3-delta in its mixed n/p regime under oxygen potential gradients Lee YS, Yoo HI |
383 - 389 |
Composite doped emeraldine-polyethylene oxide-bonded lithium-ion nano-tin anodes with electronic-ionic mixed conduction Zhang XW, Wang CS, Appleby AJ, Little FE |
391 - 405 |
Structural and lithium intercalation studies of Mn(0.5-x)CaxTi2(PO4)(3) phases (0 <= x <= 0.50) Aatiq A, Menetrier M, El Jazouli A, Delmas C |
407 - 415 |
Hydrated layered manganese dioxide Part I. Synthesis and characterization of some hydrated layered manganese dioxides from alpha-NaMnO2 Abou-El-Sherbini KS, Askar MH, Schollhorn R |
417 - 430 |
Hydrated layered manganese dioxide Part II. Electrochemical behaviour of some hydrated layered manganese dioxides in alkaline electrolytes Abou-El-Sherbini KS, Askar MH, Schollhorn R |
431 - 442 |
Structural modifications of dodecatungstophosphoric acid hexahydrate induced by temperature in the 10-358 K range. In situ high-resolution neutron powder diffraction investigation Kremenovic A, Bire AS, Bouree F, Colomban P, Dimitrijevic R, Davidovic M, Mioc UB |
443 - 448 |
Simulation of flourine migration in NiF2 Atkinson KJW, Grimes RW, Owens SL |