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Dr. Gopel Wolfgang Obituary Schoonman J |
3 - 3 |
12th International Conference on Solid State Ionics -Halkidiki, Greece, June 6-12, 1999 - Preface Vayenas CG |
5 - 19 |
Nanostructured materials in solid state ionics Schoonman J |
21 - 32 |
Phase transformations and volume changes in spinel LixMn2O4 Van der Ven A, Marianetti C, Morgan D, Ceder G |
33 - 45 |
Thin-film lithium and lithium-ion batteries Bates JB, Dudney NJ, Neudecker B, Ueda A, Evans CD |
47 - 52 |
Nanocomposite polymer electrolytes and their impact on the lithium battery technology Croce F, Persi L, Ronci F, Scrosati B |
53 - 59 |
Electronic structure and reactivity of Li1-xMn2O4 cathode Molenda J, Swierczek K, Molenda M, Marzec J |
61 - 69 |
Electrochemical lithium intercalation into a hexagonal WO3 framework and its structural change Hibino M, Han WC, Kudo T |
71 - 79 |
Effect of iron on the electrochemical behaviour of lithium nickelate: from LiNiO2 to 2D-LiFeO2 Delmas C, Prado G, Rougier A, Suard E, Fournes L |
81 - 86 |
New materials for polymer electrolytes Mustarelli P, Quartarone E, Tomasi C, Magistris A |
87 - 93 |
Search for suitable matrix for the use of tin-based anodes in lithium ion batteries Santos-Pena J, Brousse T, Schleich DM |
95 - 100 |
Transmission electron microscopy (TEM) analysis of two-phase reaction in electrochemical lithium insertion within alpha-MoO3 Iriyama Y, Abe T, Inaba M, Ogumi Z |
101 - 106 |
Lithium insertion into self-organized mesoscopic TiO2 (anatase) electrodes Krtil P, Fattakhova D, Kavan L, Burnside S, Gratzel M |
107 - 114 |
Mechanochemical synthesis of LiMn2O4 cathode material for lithium batteries Kosova NV, Uvarov NF, Devyatkina ET, Avvakumov EG |
115 - 120 |
Anomaly in the potential-composition profile of a LiMn2O4 spinel at low temperature Abiko H, Hibino M, Kudo T |
121 - 130 |
Electrochemical performances of layered LiM1-yMy ' O-2 (M = Ni, Co; M ' = Mg, Al, B) oxides in lithium batteries Julien C, Nazri GA, Rougier A |
131 - 135 |
Synthesis and properties of LiGaxMgyN1-x-yO2 as cathode material for lithium ion batteries Yu A, Rao GVS, Chowdari BVR |
137 - 142 |
Enhancement of discharge capacity of Li3V2(PO4)(3) by stabilizing the orthorhombic phase at room temperature Sato M, Ohkawa H, Yoshida K, Saito M, Uematsu K, Toda K |
143 - 147 |
On the diffusion of Li+ defects in LiCoO2 and LiNiO2 Nakamura K, Ohno K, Okamura K, Michihiro Y, Nakabayashi I, Kanashiro T |
149 - 154 |
Cation coordination in ion-conducting gels based on PEO-grafted polymers Adebahr J, Gavelin P, Jannasch P, Ostrovskii D, Wesslen B, Jacobsson P |
155 - 161 |
Electrical conductivity, DSC and NMR studies of PEG and PPG containing lithium salts Wintersgill MC, Fontanella JJ, Stallworth PE, Newman SA, Chung SH, Greenbaum SG |
163 - 167 |
Novel tin oxide-based anodes for Li-ion batteries Belliard F, Connor PA, Irvine JTS |
169 - 174 |
Vitreous tin oxide-based thin film electrodes for Li-ion micro-batteries Branci C, Benjelloun N, Sarradin J, Ribes M |
175 - 180 |
SnSbx-based composite electrodes for lithium ion cells Yang J, Takeda Y, Imanishi N, Ichikawa T, Yamamoto O |
181 - 191 |
The crystal structural evolution of nano-Si anode caused by lithium insertion and extraction at room temperature Li H, Huang XJ, Chen LQ, Zhou GW, Zhang Z, Yu DP, Mo YJ, Pei N |
193 - 197 |
Hydrothermal synthesis of hexagonal tungsten trioxide from Li2WO4 solution and electrochemical lithium intercalation into the oxide Komaba S, Kumagai N, Kato K, Yashiro H |
199 - 207 |
On the improvement of Li charge/discharge cyclability of carbon fibers by making a C/C composite with thermosetting resins Saito M, Yamaguchi K, Sekine K, Takamura T |
209 - 212 |
Surface modification of natural graphite particles for lithium ion batteries Tsumura T, Katanosaka A, Souma I, Ono T, Aihara Y, Kuratomi J, Inagaki M |
213 - 221 |
Impedance study of the Li degrees/electrolyte interface upon cycling Orsini F, Dolle M, Tarascon JM |
223 - 228 |
Effect of the lactate precursor on the microstructure of Li1+xMn2-xO4 with 0 <= x <= 0.33 Gorova M, Zhecheva E |
229 - 234 |
The charge/discharge mechanism of polyaniline films doped with LiBF4 as a polymer electrode in a Li secondary battery Ryu KS, Kim KM, Kang SG, Lee GJ, Chang SH |
235 - 240 |
Transport properties of Bi2Sr2CaCu2O8-y at high temperatures Molenda J, Nowak I, Jedynak L, Marzec J, Stoklosa A |
241 - 248 |
Combustion synthesis and characterization of substituted lithium cobalt oxides in lithium batteries Julien C, Camacho-Lopez MA, Mohan T, Chitra S, Kalyani P, Gopukumar S |
249 - 257 |
Plastic PVDF-HFP electrolyte laminates prepared by a phase-inversion process Du Pasquier A, Warren PC, Culver D, Gozdz AS, Amatucci GG, Tarascon JM |
259 - 266 |
Structural characterisation of new metastable NiO2 phases Croguennec L, Pouillerie C, Delmas C |
267 - 272 |
X-ray absorption investigation on the ternary system lithium manganese oxide Buhrmester T, Martin M |
273 - 276 |
Single-step fabrication of Li1-xNi1+xOx and LiCoO2 films by soft solution-processing at 20-200 degrees C Han KS, Song SW, Fujita H, Yoshimura M |
277 - 281 |
Effect of LiOH concentration change on simultaneous preparation of LiCoO2 film and powder by hydrothermal method Song SW, Han KS, Sasagawa I, Watanabe T, Yoshimura M |
283 - 290 |
Characterization of the passivation layer at the polymer electrolyte/lithium electrode interface Le Granvalet-Mancini M, Hanrath T, Teeters D |
291 - 295 |
Sol-gel chromium-vanadium mixed oxides as lithium insertion compounds Soudan P, Pereira-Ramos JP, Farcy J, Gregoire G, Baffier N |
297 - 304 |
Optimizing carbon/LiMn2O4 rechargeable Li-ion cells: the effect of electrode fabrication and mass balance on cell performance Terzidis D, Mitsas CL, Hatzikraniotis E, Papadopoulos I, Zorba T, Moumouzias G, Siapkas DI, Kokkou S |
305 - 313 |
Advances in solid oxide fuel cell technology Singhal SC |
315 - 323 |
Polymer electrolytes and the electric vehicle Kalhammer FR |
325 - 330 |
A techno-economic model for SOFC power systems Khandkar A, Hartvigsen J, Elangovan S |
331 - 336 |
Activation processes, electrocatalysis and operating protocols enhance SOFC performance McEvoy AJ |
337 - 345 |
Reaction mechanism of Ni pattern anodes for solid oxide fuel cells Bieberle A, Gauckler LJ |
347 - 351 |
High performance electrodes for medium-temperature solid oxide fuel cells: Activation of La(Sr)CoO3 cathode with highly dispersed Pt metal electrocatalysts Uchida H, Arisaka S, Watanabe M |
353 - 358 |
Cathodic reaction mechanism of dense La0.6Sr0.4CoO3 and La0.81Sr0.09MnO3 electrodes for solid oxide fuel cells Endo A, Fukunaga H, Wen C, Yamada K |
359 - 364 |
Synthesis of (La,Sr)MeO3 (Me = Cr, Mn, Fe, Co) solid solutions from aqueous solutions Yao T, Uckimoto Y, Sugiyama T, Nagai Y |
365 - 372 |
Ceramic conductors for electrochemical cell applications: new perspectives in materials and synthesis Jurado JR, Chinarro E, Colomer MT |
373 - 380 |
Preparation of thin film SOFCs working at reduced temperature Charpentier P, Fragnaud P, Schleich DM, Gehain E |
381 - 388 |
Electrical conductivity and mechanical properties of alumina-dispersed doped lanthanum gallates Yasuda I, Matsuzaki Y, Yamakawa T, Koyama T |
389 - 396 |
Vaporization process of Ga from doped LaGaO3 electrolytes in reducing atmospheres Yamaji K, Negishi H, Horita T, Sakai N, Yokokawa H |
397 - 402 |
Fabrication of La1-xSrxGa1-yMgyO3-(x plus y)/2 thin films by pulsed laser ablation Mathews T, Manoravi P, Antony MP, Sellar JR, Muddle BC |
403 - 409 |
Total electrical conductivity and defect structure of ZrO2-CeO2-Y2O3-Gd2O3 solid solutions Tsoga A, Naoumidis A, Stover D |
411 - 417 |
Observation of diffuse electron scattering in Sr- and Mg-doped LaGaO3 Mathews T, Sellar JR |
419 - 423 |
Complex impedance studies of proton-conducting membranes Edmondson CA, Stallworth PE, Chapman ME, Fontanella JJ, Wintersgill MC, Chung SH, Greenbaum SG |
425 - 431 |
Alternative anode material for gradual methane reforming in solid oxide fuel cells Vernoux P, Guillodo M, Fouletier J, Hammou A |
433 - 438 |
Chromite/titanate based perovskites for application as anodes in solid oxide fuel cells Pudmich G, Boukamp BA, Gonzalez-Cuenca M, Jungen W, Zipprich W, Tietz F |
439 - 444 |
5 mol% TiO2-doped Ni-YSZ anode cermets for solid oxide fuel cells Skarmoutsos D, Tsoga A, Naoumidis A, Nikolopoulos P |
445 - 450 |
Kinetic parameters influencing the performance of IT-SOFC composite electrodes Steele BCH, Hori KM, Uchino S |
451 - 456 |
Zirconia-based SOFC with non-noble electrodes fed by air-methane mixture Demin AK, Gulbis FY |
457 - 462 |
Polarized electrochemical vapor deposition for cermet anodes in solid oxide fuel cells Young JL, Etsell TH |
463 - 467 |
Performance of composite LaCoO3-La-2(Zr,Y)(2)O-7 cathodes Figueiredo FM, Frade JR, Marques FMB |
469 - 474 |
Chromium diffusion in lanthanum chromites Sakai N, Yamaji K, Horita T, Negishi H, Yokokawa H |
475 - 479 |
Characteristics of lanthanum strontium chromite prepared by glycine nitrate process Yang YJ, Wen TL, Tu HY, Wang DQ, Yang JH |
481 - 485 |
Oxygen chemical potential variation in ceria-based solid oxide fuel cells determined by Raman spectroscopy Mineshige A, Taji T, Muroi Y, Kobune M, Fujii S, Nishi N, Inaba M, Ogumi Z |
487 - 491 |
Micro-SOFC system using butane fuel Sammes NM, Boersma RJ, Tompsett GA |
493 - 502 |
Losses resulting from in-plane electricity conduction in tubular solid oxide fuel cells Boersma RJ, Sammes NM, Fee CJ |
503 - 512 |
Intermediate temperature fuel cells using alkaline and alkaline earth fluoride-based electrolytes Zhu B, Albinsson I, Mellander BE |
513 - 518 |
Synthesis, electrical properties and thermal analysis of transition metal-doped Mg2TiO4 spinels Flot DM, Irvine JTS |
519 - 524 |
Tetragonal tungsten bronze type phases (Sr1-xBax)(0.6)Ti0.2Nb0.8O3-delta: Material characterisation and performance as SOFC anodes Kaiser A, Bradley JL, Slater PR, Irvine JTS |
525 - 528 |
Electrical characterisation of ceramic conductors for fuel cell applications Martinez-Juarez A, Sanchez L, Chinarro E, Recio P, Pascual C, Jurado JR |
529 - 535 |
Chemical reactivity of perovskite oxide SOFC cathodes and yttria stabilized zirconia Kostogloudis GC, Tsiniarakis G, Ftikos C |
537 - 541 |
Crystal structure, thermal expansion and electrical conductivity of Pr1-xSrxCo0.2Fe0.8O3-delta (0 <= x <= 0.5) Kostogloudis GC, Ftikos C |
543 - 547 |
Material properties of La0.8Sr0.2Ga9+xMg0.1O3-delta as a function of Ga content Ahmad-Khanlou A, Tietz F, Stover D |
549 - 555 |
Preparation and characterisation of La1-xSrxGa1-yMgyO3-(x plus y)/2 for the investigation of cation diffusion processes Schulz O, Martin M |
557 - 561 |
A manometric method for the determination of chemical diffusion in non-stoichiometric oxides: Example of (La,Sr)MnO3 Bak T, Nowotny J, Rekas M, Sorrell CC, Vance ER |
563 - 565 |
Surface electrical properties of (La,Sr)(Co,Fe,Mn)O-3 Bak T, Nowotny J, Rekas M, Sorrell CC, Vance ER |
567 - 573 |
Sintering and properties of nanosized ceria solid solutions Kleinlogel C, Gauckler LJ |
575 - 588 |
Interaction of oxygen with oxides: How to interpret measured effective rate constants? Maier J |
589 - 594 |
Process of solid state reaction between doped ceria and zirconia Eguchi K, Akasaka N, Mitsuyasu H, Nonaka Y |
595 - 602 |
Structure, Raman spectra and defect chemistry modelling of conductive pyrochlore oxides Poulsen FW, Glerup M, Holtappels P |
603 - 612 |
Limitations of charge-transfer models for mixed-conducting oxygen electrodes Adler SB |
613 - 618 |
Study of oxygen exchange and transport in mixed conducting cobaltates by electrochemical impedance spectroscopy Diethelm S, Closset A, Van Herle J, McEvoy AJ, Nisancioglu K |
619 - 623 |
Defect structure and chemical diffusion in BaTiO3-delta Yoo HI, Song CR |
625 - 630 |
High-temperature Mossbauer spectroscopy of electronic disorder in complex oxides Mack DE, Wissmann S, Becker KD |
631 - 636 |
Mixed electronic-oxide ionic conductivity and oxygen permeating property of Fe-, Co- or Ni-doped LaGaO3 perovskite oxide Ishihara T, Yamada T, Arikawa H, Nishiguchi H, Takita Y |
637 - 642 |
Preparation of LaSrCoFeO3-x membranes Luyten J, Buekenhoudt A, Adriansens W, Cooymans J, Weyten H, Servaes F, Leysen R |
643 - 651 |
Electronic transport properties and electronic structure of TiO2-doped YSZ Kobayashi K, Yamaguchi S, Higuchi T, Shin S, Iguchi Y |
653 - 661 |
Electrical conductivity of CeO2-doped YSZ Lee CH, Choi GM |
663 - 667 |
Ce3+ concentration in ZrO2-CeO2-Y2O3 system studied by electronic Raman scattering Otake T, Yugami H, Naito H, Kawamura K, Kawada T, Mizusaki J |
669 - 673 |
Oxygen transport properties in ZrO2-CeO2-Y2O3 by SIMS analysis Naito H, Sakai N, Otake T, Yugami H, Yokokawa H |
675 - 679 |
Electrical conductivities and chemical stabilities of mixed conducting pyrochlores for SOFC applications Holtappels P, Poulsen FW, Mogensen M |
681 - 685 |
Oxygen transport through SrFe1.125Co0.375Oy coupled with oxidation of carbon monoxide Ran S, Zhang X, Yang PH, Jiang M, Peng DK, Chen CS |
687 - 697 |
Phase relations, chemical diffusion and electrical conductivity in pure and doped Sr4Fe6O13 mixed conductor materials Bredesen R, Norby T, Bardal A, Lynum V |
699 - 707 |
Measurement of ionic conductivity in mixed conducting compounds using solid electrolyte microcontacts Zipprich W, Wiemhofer HD |
709 - 712 |
Oxygen diffusion and surface exchange in La2-xSrxNiO4+delta Skinner SJ, Kilner JA |
713 - 717 |
Oxygen permeation of SrFe0.67 Co0.33O3-d Aasland S, Tangen IL, Wiik K, Odegard R |
719 - 725 |
Evaluation of La-Sr-Co-Fe-O perovskites for solid oxide fuel cells and gas separation membranes Petric A, Huang P, Tietz F |
727 - 730 |
Electrical conduction and oxygen transport in SrFeCo0.5Ox oxide membranes Liu W, Zhang GG, Xie S, Chen CS, Meng GY, Peng DK |
731 - 736 |
Conductivity relaxation experiments on Ni1-delta O Rom I, Jantscher W, Sitte W |
737 - 742 |
Peculiarity of O2- and Li+ electrodiffusion into lithium niobate single crystals Bredikhin S, Scharner S, Klinger M, Kveder V, Red'kin B, Weppner W |
743 - 748 |
Sintering behavior of Ca- or Sr-doped LaCrO3 perovskites including second phase of AECrO(4) (AE = Sr, Ca) in air Mori H, Hiei Y, Sammes NM |
749 - 755 |
Transfer phenomena in an electrochemical reactor based on mixed oxide conductor Demin AK, Dunyushkina LA |
757 - 760 |
Oxygen-deficient perovskite compounds with oxide ion conduction Arachi Y, Asai T, Yamamoto O, Takeda Y, Imanishi N |
761 - 764 |
Oxygen stoichiometry of Sr-0.97(Ti,Fe)O3-delta materials Ferreira AAL, Abrantes JCC, Jurado JR, Frade JR |
765 - 769 |
Mixed cobalt and nickel containing perovskite oxide for intermediate temperature electrochemical applications Shaw CKM, Kilner JA, Skinner SJ |