1 - 1 |
Proceedings of the 20th International Conference on Solid State Ionics SSI-20 Preface Kim S, Chueh W, O'Hayre R, Maier J |
2 - 5 |
Tailoring the chemical stability of cobalt-rich perovskite mixed conductor Wang F, Igarashi K, Nakamura T, Yashiro K, Mizusaki J, Amezawa K |
6 - 9 |
Effect of La0.6Sr0.4Co0.2Fe0.8O3-delta microstructure on oxygen surface exchange kinetics Develos-Bagarinao K, Kishimoto H, De Vero J, Yamaji K, Horita T |
10 - 13 |
Interfacial stability of iron doped lanthanum strontium chromite and Scandia stabilized zirconia in oxidizing and reducing atmosphere Gupta S, Lane JA, Wilson JR, Plonczak PJ, Singh P |
14 - 21 |
Phase decomposition in the chromium- and silicon-poisoned IT-SOFC cathode materials La0.6Sr0.4CoO3-delta and La2NiO4 (+) (delta) Schrodl N, Bucher E, Gspan C, Egger A, Ganser C, Teichert C, Hofer F, Sitte W |
22 - 27 |
Long-term degradation of La0.6Sr0.4Co0.2Fe0.8O3-delta IT-SOFC cathodes due to silicon poisoning Perz M, Bucher E, Gspan C, Waldhausl J, Hofer F, Sitte W |
28 - 31 |
Combined Cr and Mo poisoning of (La,Sr)(Co,Fe)O-3 (-) (delta) solid oxide fuel cell cathodes at the nanoscale Ni N, Skinner S |
32 - 35 |
SrCo1-xMoxO3 (-) (delta) perovskites as cathode materials for LaGaO3-based intermediate-temperature solid oxide fuel cells Wang R, Jin FJ, Ta L, He TM |
36 - 42 |
Influence of the synthesis method on the electrochemical properties of bilayer electrodes based on La2NiO4 (+) (delta) and LaNi0.6Fe0.4O3-delta Pikalova EY, Bogdanovich NM, Kolchugin AA, Ananyev MV, Pankratov AA |
43 - 47 |
Oxygen storage properties and catalytic activity of layer-ordered perovskites BaY1-xGdxMn2O5 (+) (delta) Klimkowicz A, Swierczek K, Rzasa T, Takasaki A, Dabrowski B |
48 - 53 |
Structural, electrical and electrochemical properties of calcium-doped lanthanum nickelate Kolchugin AA, Pikalova EY, Bogdanovich NM, Bronin DI, Pikalov SM, Plaksin SV, Ananyev MV, Eremin VA |
54 - 60 |
NdBa1-xCo2O5 (+) (delta) as cathode materials for IT-SOFC Sun JL, Liu XM, Han F, Zhu LL, Bi HL, Wang HP, Yu SL, Pei L |
61 - 67 |
Synthesis and preliminary study of the double perovskite NdBaMn2O5 (+) (delta) as symmetric SOFC electrode material Pineda OL, Moreno ZL, Roussel P, Swierczek K, Gauthier GH |
68 - 75 |
Synthesis and preliminary study of La4BaCu5O13+ (delta) and La6.4Sr1.6Cu8O20 (+/-) (delta) ordered perovskites as SOFC/PCFC electrode materials Macias MA, Sandoval MV, Martinez NG, Vazquez-Cuadriello S, Suescun L, Roussel P, Swierczek K, Gauthier GH |
76 - 81 |
The effect of microwave sintering on stability and oxygen mobility of praseodymium nickelates-cobaltites and their nanocomposites Sadykov VA, Eremeev NF, Bolotov VA, Tanashev YY, Fedorova YE, Amanbayeva DG, Bobin AS, Sadovskaya EM, Muzykantov VS, Pelipenko VV, Lukashevich AI, Krieger TA, Ishchenko AV, Smirnova AL |
82 - 87 |
Conductivity and structure of sub-micrometric SrTiO3-YSZ composites Ruiz-Trejo E, Thyden K, Bonanos N, Mogensen MB |
88 - 93 |
Chemical compatibility of doped yttrium chromite and ceria composite materials with YSZ electrolyte Yan K, Kishimoto H, Develos-Bagarinao K, Yamaji K, Horita T, Yokokawa H |
94 - 97 |
Structural and electrical properties of spark plasma sintered scandia-and dysprosia-stabilized zirconia Grosso RL, Tertuliano AJ, Machado IF, Muccillo ENS |
98 - 102 |
Nanocomposite ceramics based on Ce0.9Gd0.1O1.95 and MgO Vashook V, Zosel J, Sperling E, Ahlborn K, Gerlach F, Fichtner W, Schelter M, Guth U, Mertig M |
103 - 109 |
Structural and transport properties of doped LAMOX - Electrolytes for IT SOFC Pavlova S, Bespalko Y, Sadykov V, Eremeev N, Krieger T, Sadovskaya E, Ishchenko A, Bobin A, Ulihin A, Uvarov N, Smirnova A |
110 - 114 |
Electrophoretic deposition of a self-stabilizing suspension based on a nanosized multi-component electrolyte powder prepared by the laser evaporation method Kalinina EG, Pikalova EY, Menshikova AV, Nikolaenko IV |
115 - 119 |
Ni1-xCux-SDC anodes for intermediate temperature solid oxide fuel cell Zhu LL, Liu XM, Han F, Sun JL, Bi HL, Wang HP, Yu SL, Pei L |
120 - 123 |
Nickel nanocatalyst exsolution from (La,Sr) (Cr,M,Ni)O-3 (M=Mn,Fe) perovskites for the fuel oxidation layer of Oxygen Transport Membranes Papargyriou D, Irvine JTS |
124 - 129 |
Evaluation of W-containing Sr1-xBaxFe0.75W0.25O3-delta (x=0, 0.5, 1) anode materials for solid oxide fuel cells Zheng K, Swierczek K |
130 - 134 |
Encroachment of titanium oxide on Ni surface for Ni/TiO2 under reducing atmosphere Wang FF, Kishimoto H, Develos-Bagarinao K, Yamaji K, Horita T, Yokokawa H |
135 - 139 |
Iso-octane internal reforming in a solid oxide cell reactor Al-Musa A, Kaklidis N, Al-Saleh M, A-Zahrani A, Kyriakou V, Marnellos GE |
140 - 146 |
Effect of fuel thermal pretreament on the electrochemical performance of a direct lignite coal fuel cell Kaklidis N, Kyriakou V, Marnellos GE, Strandbakke R, Arenillas A, Menendez JA, Konsolakis M |
147 - 153 |
Synthesis and characterisation of Pd-Ni-Sn electrocatalyst for use in direct ethanol fuel cells Jongsomjit S, Prapainainar P, Sombatmankhong K |
154 - 159 |
Preparation and properties of DMFC membranes from polymer-brush nanoparticles Khabibullin A, Smith JJ, Minteer SD, Zharov I |
160 - 166 |
New insights into ordering and dynamics in organic ionic plastic crystal electrolytes Forsyth M, Chen F, O'Dell LA, Romanenko K |
167 - 170 |
Electrochemical properties of LiNi1/3Co1/3Mn1/3O2 electrodes prepared with water-based slurry dispersed conducting additive by using liquid-phase plasma treatment Oka Y, Sasaki T, Matsumoto H, Nakamura T |
171 - 175 |
Synthesis and characterization of Li(LiyFezV1-y-z)O2-delta - cathode material for Li-ion batteries Gedziorowski B, Fuksa M, Molenda J |
176 - 179 |
Lattice volume change during charge/discharge reaction and cycle performance of Li[NixCoyMnz]O-2 Ishidzu K, Oka Y, Nakamura T |
180 - 183 |
Electrochemical study of LiMn1.5Ni0.5O4 spinel oxides prepared by two-step process Hanafusa R, Kotani K, Ishidzu K, Oka Y, Nakamura T |
184 - 192 |
Correlation between transport properties and lithium extraction/insertion mechanism in Fe-site substituted phosphoolivine Kulka A, Swierczek K, Walczak K, Braun A, Molenda J |
193 - 198 |
Synthesis of nanostructured Li3Me2(PO4)(2)F-3 glass-ceramics (Me = V, Fe, Ti) Pietrzak TK, Michalski PP, Wasiucionek M, Garbarczyk JE |
199 - 203 |
Preparation of Li2S-FePS3 composite positive electrode materials and their electrochemical properties Takeuchi T, Kageyama H, Ogawa M, Mitsuhara K, Nakanishi K, Ohta T, Sakuda A, Kobayashi H, Sakaebe H, Ogumi Z |
204 - 206 |
Electrodeposited copper foams as substrates for thin film silicon electrodes Dogan F, Sanjeewa LD, Hwu SJ, Vaughey JT |
207 - 212 |
Stabilization of the polymer electrolyte/lithium metal electrode interface with increased ion conduction using PEO polymer/low molecular weight PE-b-PEO diblock copolymer composite bi-layer films Brown NR, Makkapati T, Teeters D |
213 - 218 |
Improvement of electrochemical performance of Na0.7Co1-yMnyO2-cathode material for rechargeable sodium-ion batteries Baster D, Zajac W, Kondracki L, Hartman F, Molenda J |
219 - 223 |
Electrochemical properties of Sn-Co electrode with various kinds of binder materials for sodium ion batteries Yui Y, Hayashi M, Hayashi K, Nakamura J |
224 - 228 |
Interfacial energy level alignment and energy level diagrams for all-solid Li-ion cells: Impact of Li-ion transfer and double layer formation Schwobel A, Jaegermann W, Hausbrand R |
229 - 234 |
Synthesis, structure, and electrochemical properties of crystalline Li-P-S-O solid electrolytes: Novel lithium-conducting oxysulfides of Li10GeP2S12 family Suzuki K, Sakuma M, Hori S, Nakazawa T, Nagao M, Yonemura M, Hirayama M, Kanno R |
235 - 239 |
Evolution of microstructure and its relation to ionic conductivity in Li1+xAlxTi2-x(PO4)(3) Hupfer T, Bucharsky EC, Schell KG, Senyshyn A, Monchak M, Hoffmann MJ, Ehrenberg H |
240 - 243 |
Preparation of Li3PS4 solid electrolyte using ethyl acetate as synthetic medium Phuc NHH, Totani M, Morikawa K, Muto H, Matsuda A |
244 - 247 |
Effect of surface modification and oxygen deficiency on intercalation property of lithium nickel manganese oxide in an all-solid-state battery Oh G, Hirayama M, Kwon O, Suzuki K, Kanno R |
248 - 252 |
All-solid-state lithium-ion battery using Li2.2C0.8B0.2O3 electrolyte Okumura T, Takeuchi T, Kobayashi H |
253 - 256 |
Rechargeable lithium semi-flow battery using Li7P3S11 Rao RP, Yuen JM, Adams S |
257 - 261 |
Two-dimensional imaging of charge/discharge by Bragg edge analysis of electrode materials for pulsed neutron-beam transmission spectra of a Li-ion battery Kino K, Yonemura M, Ishikawa Y, Kamiyama T |
262 - 265 |
Oxide ion conductivity in doped NdBaInO4 Ishihara T, Yan Y, Sakai T, Ida S |
266 - 270 |
Electrolyte related parameters of coulometric solid state devices Schelter M, Zosel J, Vashook V, Guth U, Mertig M |
271 - 276 |
Polymer architecture effect on sodium ion transport in PSTFSI-based ionomers: A molecular dynamics study Chen XY, Chen FF, Liu MS, Forsyth M |
277 - 280 |
AC/DC conductivity studies of composites of glassy electronic and ionic conductors Slubowska W, Nowinski JL, Pietrzak TK, Garbarczyk JE, Wasiucionek M |
281 - 285 |
Relationship between structure and mobility of proton carriers injected by electrochemical substitution of sodium ions with protons in 35NaO(1/2)-1 WO3-8NbO(5/2)-5LaO(3/2)-51PO(5/2)-based glasses Yamaguchi T, Ishiyama T, Sakuragi K, Nishii J, Yamashita T, Kawazoe H, Kuwata N, Kawamura J, Omata T |
286 - 290 |
Conductivity relaxation experiments on donor doped barium titanate ceramics: Effect of microstructure Preis W, Sitte W |
291 - 297 |
Two-fold stoichiometry relaxation - Simulated relaxation kinetics of ionic and electronic defect concentrations Merkle R, Zohourian R, Maier J |
298 - 302 |
Oxygen nonstoichiometry and thermodynamic quantities in the Ruddlesden-Popper oxides LaxSr3 (-) xFe2O7-delta Ling YH, Wang F, Okamoto Y, Nakamura T, Amezawa K |
303 - 306 |
Crystal structure of R10Mo6O33 (R = Nd, Pr) from 3 K to 973 K by neutron powder diffraction Ishikawa Y, Danilkin SA, Avdeev M, Voronkova VI, Sakuma T |
307 - 310 |
Impedance spectroscopy analysis inspired by evolutionary programming as a diagnostic tool for SOEC and SOFC Drach Z, Hershkovitz S, Ferrero D, Leone P, Lanzini A, Santarelli M, Tsur Y |
311 - 314 |
Analysis of impedance spectroscopy of aqueous supercapacitors by evolutionary programming: Finding DFRT from complex capacitance Oz A, Hershkovitz S, Belman N, Tal-Gutelmacher E, Tsur Y |
315 - 321 |
The application of 3D imaging techniques, simulation and diffusion experiments to explore transport properties in porous oxygen transport membrane support materials Tjaden B, Lane J, Withers PJ, Bradley RS, Brett DJL, Shearing PR |
322 - 324 |
Novel method for determining the triple phase boundary width Beitner T, Baltianski S, Riess I, Tsur Y |
325 - 330 |
Scanning probe microscopy polarization experiments with polycrystalline Ce0.8Gd0.2 - xPrxO2 (-) (delta) and Ce0.8Y0.2O2 (-) (delta) single crystals at room temperature Neuhaus K, Schulze-Kuppers F, Baumann S, Ulbrich G, Lerch M, Wiemhofer HD |
331 - 337 |
Advances in ion transport membrane technology for oxygen and syngas production Anderson LL, Armstrong PA, Broekhuis RR, Carolan MF, Chen J, Hutcheon MD, Lewinsohn CA, Miller CF, Repasky JM, Taylor DM, Woods CM |
338 - 341 |
Flux investigations on composite (La0.8Sr0.2)(0.95)Cr0.5Fe0.5O3 -Sc-delta(0.198) Ce0.012Zr0.789O1.90 oxygen transport membranes Dehaney-Steven Z, Papargyriou D, Irvine JTS |
342 - 346 |
Phase inversion tape casting and oxygen permeation properties of supported planar Zr0.84Y0.16O1.92-La0.8Sr0.2Cr0.5Fe0.5O3-delta composite membrane Zhang Y, Yuan RH, He ZY, Gao JF, Chen CS |
347 - 350 |
Development of anode-supported electrochemical cell based on proton-conductive Ba(Ce,Zr)O-3 electrolyte Yamaguchi T, Shimada H, Honda U, Kishimoto H, Ishiyama T, Hamamoto K, Sumi H, Suzuki T, Fujishiro Y |
351 - 356 |
Electrochemical studies of Gd0.5Pr0.5BaCo2O5 (+ delta) (GPBC) cathode for oxide ion and proton conducting solid oxide fuel cells Singh K, Baral AK, Thangadurai V |
357 - 362 |
Electrochemical enhancement of ammonia synthesis in a BaZr0.7Ce0.2Y0.1O2.9 solid electrolyte cell Vasileiou E, Kyriakou V, Garagounis I, Vourros A, Manerbino A, Coors WG, Stoukides M |