1 - 5 |
First principles calculations of oxygen vacancy formation and migration in mixed conducting Ba0.5Sr0.5Co1-yFeyO3-delta perovskites Kotomin EA, Mastrikov YA, Kuklja MM, Merkle R, Roytburd A, Maier J |
6 - 14 |
Computer simulation of ionic transport in silver iodide within carbon nanotubes Gotlib IY, Ivanov-Schitz AK, Murin IV, Petrov AV, Zakalyukin RM |
15 - 20 |
Phase transition kinetics in lattice models of intercalation compounds Lasovsky RN, Bokun GS, Vikhrenko VS |
21 - 24 |
Interpretation of the Co K-edge EXAFS in LaCoO3 using molecular dynamics simulations Kuzmin A, Efimov V, Efimova E, Sikolenko V, Pascarelli S, Troyanchuk IO |
25 - 30 |
LCAO calculation of water adsorption on (001) surface of Y-doped BaZrO3 Evarestov RA, Bandura AV |
31 - 35 |
First-principles simulations of the electronic density of states for superionic Ag2CdI4 crystals Velgosh S, Andriyevsky B, Karbovnyk I, Bolesta I, Bovgyra O, Ciepluch-Trojanek W, Kityk IV, Popov AI |
36 - 40 |
XPS and impedance spectroscopy of some oxygen vacancy conducting solid electrolyte ceramics Orliukas AF, Salkus T, Kezionis A, Venckute V, Kazlauskiene V, Miskinis J, Laukaitis G, Dudonis J |
41 - 45 |
Influence of initial powder particle size on yttrium stabilized zirconium thin films formed by e-beam technique Laukaitis G, Virbukas D, Dudonis J, Katkauske O, Milcius D |
46 - 49 |
The properties of scandium and cerium stabilized zirconium thin films formed by e-beam technique Virbukas D, Laukaitis G, Dudonis J, Milcius D |
50 - 52 |
Conductivity investigations of Aurivillius-type Bi2.5Gd1.5Ti3O12 ceramics Masiukaite E, Banys J, Sobiestianskas R, Ramoska T, Khomchenko VA, Kiselev DA |
53 - 57 |
Structure, nonstoichiometry and thermal expansion of the NdBa(Co,Fe)(2)O5+delta layered perovskite Cherepanov VA, Aksenova TV, Gavrilova LY, Mikhaleva KN |
58 - 63 |
Electrochemical study of the composite electrolyte based on samaria-doped ceria and containing yttria as a second phase Raza R, Abbas G, Wang XD, Ma Y, Zhu B |
64 - 68 |
Cathode-supported SOFC using a highly conductive lanthanum aluminate-based electrolyte Fung KZ, Chen TY |
69 - 72 |
Determination of the non-Arrhenius behaviour of the bulk conductivity of fast ionic conductors LLTO at high temperature Salkus T, Kazakevicius E, Kezionis A, Orliukas AF, Badot JC, Bohnke O |
73 - 77 |
Preparation and characterization of Li-1 (+) xAlyScx (-) Ti-y(2) (-) (x)(PO4)(3) (x=0.3, y=0.1, 0.15, 0.2) ceramics Kazakevicius E, Salkus T, Selskis A, Selskiene A, Dindune A, Kanepe Z, Ronis J, Miskinis J, Kazlauskiene V, Venckute V, Kezionis A, Orliukas AF |
78 - 82 |
Ion transport in salts orientationally disordered in anionic sublattice Uvarov NF, Iskakova AA, Ulihin AS, Medvedev NN, Anikeenko AV |
83 - 85 |
Solid electrolytes in the binary system RbNO3-RbNO2 Iskakova AA, Uvarov NF |
86 - 89 |
Influence of the process variables on mechanosynthesis of Agl-Ag2O-WO3 system Nowinski JL, Grabowski P, Garbarczyk JE, Wasiucionek M |
90 - 93 |
Electrical properties of the all-glass composite silver ion conductors Nowinski JL, Slubowska W, Garbarczyk JE, Wasiucionek M |
94 - 98 |
Characterisation of silver vanadate glasses prepared by melt quenching, twin rollers and mechanosynthesis methods Czajkowska A, Nowinski J, Mroczkowska M, Garbarczyk JE, Wasiucionek M |
99 - 103 |
Electrical properties and thermal stability of FePO4 glasses and nanomaterials Pietrzak TK, Wewior L, Garbarczyk JE, Wasiucionek M, Gorzkowska I, Nowinski JL, Gierlotka S |
104 - 109 |
Harnessing evolutionary programming for impedance spectroscopy analysis: A case study of mixed ionic-electronic conductors Hershkovitz S, Baltianski S, Tsur Y |
110 - 113 |
Broadband high frequency impedance spectrometer with working temperatures up to 1200 K Kezionis A, Kazakevicius E, Salkus T, Orliukas A |
114 - 117 |
Electrical impedance spectroscopy of ionic liquid 1-ethyl-3-methylimidazolium methanesulfonate (ECOENG (TM) 110) Katkevics J, Viksna A, Zicmanis A, Vaivars G |
118 - 123 |
Synthesis and electrochemical characterization of poly(3,4-ethylenedioxythiophene) modified by iron hexacyanocobaltate Wilamowska M, Lisowska-Oleksiak A |
124 - 128 |
Ionic transport mechanism in cation-exchange membranes studied by NMR technique Volkov VI, Pavlov AA, Sanginov EA |
129 - 131 |
Ion mobility and conductivity of hybrid ion-exchange membranes incorporating inorganic nanoparticles Safronova EY, Volkov VI, Yaroslavtsev AB |
132 - 134 |
Composite materials based on polybenzimidazole and inorganic oxides Lysova AA, Ponomarev II, Yaroslavtsev AB |
135 - 139 |
Application of gelcasting process in ceria membranes formation Molenda M, Furczon K, Kochanowski A, Zapotoczny S, Szuwarzynski M, Dudek B, Dziembaj R |
140 - 143 |
Modification of the proton conducting membranes of MF-4SC with a carbon phase via gamma-initiated graft polymerization of vinyliden chloride Abdrashitov EF, Bokun VC, Dobrovolsky YA, Kritskaya DA, Sanginov EA, Ponomarev AN |
144 - 147 |
H+/Li+ exchange property of Li3xLa2/3-xTiO3 in water and in humid atmosphere Bohnke O, Pham QN, Boulant A, Emery J, Salkus T, Barre M |
148 - 155 |
Magnetic analysis of lamellar oxides for Li-ions batteries Zhang X, Julien CM, Mauger A, Gendron F |
156 - 159 |
Physical and electrochemical properties of LiFePO4/C thin films deposited by direct current and radiofrequency magnetron sputtering Bajars G, Kucinskis G, Smits J, Kleperis J |
160 - 164 |
Nanocrystalline lithium-manganese oxide spinels for Li-ion batteries -Sol-gel synthesis and characterization of their structure and selected physical properties Michalska M, Lipinska L, Mirkowska M, Aksienionek M, Diduszko R, Wasiucionek M |
165 - 169 |
On stability of iodine doped TiO2 electrodes in pH varied aqueous electrolytes Szybowska K, Lisowska-Oleksiak A |