1 - 6 |
Recent developments on anodes for direct fuel utilization in SOFC Gorte RJ, Vohs JM, McIntosh S |
7 - 12 |
Ionic transport in nano-sized systems Maier J |
13 - 18 |
Glassy materials based on Li2S for all-solid-state lithium secondary batteries Tatsumisago M |
19 - 22 |
Electrical conductivity and stability of Gd-doped ceria/Y-doped zirconia ceramics and thin films Zhou XD, Scarfino B, Anderson HU |
23 - 27 |
A study of cathode materials for intermediate temperature SOFCs prepared by the sol-gel method Chiba R, Yoshimura F, Sakurai Y, Tabata Y, Arakawa M |
29 - 34 |
Application of novel aerosol-assisted chemical vapor deposition techniques for SOFC thin films Meng GY, Song HZ, Dong Q, Peng DK |
35 - 38 |
Impedance spectroscopy of single chamber SOFC Jasinski P, Suzuki I, Dogan F, Anderson HU |
39 - 46 |
Anode-supported thin-film fuel cells operated in a single chamber configuration 2T-I-12 Shao ZP, Kwak C, Haile SM |
47 - 50 |
Development of intermediate-temperature solid oxide fuel cells for direct utilization of hydrocarbon fuels Lu C, An S, Worrell WL, Vohs JM, Gorte RJ |
51 - 54 |
Solid state fuel storage and utilization through reversible carbon deposition on an SOFC anode Ihara M, Matsuda K, Sato H, Yokoyama C |
55 - 58 |
Determination of the equilibrium oxygen non-stoichiometry and the electrical conductivity of La0.5Sr0.5FeO3-x Yoo J, Park CY, Jacobson AJ |
59 - 61 |
Ln(1-x)Sr(x)CoO(3) (Ln=Gd, Pr) as a cathode for intermediate-temperature solid oxide fuel cells Rossignol C, Ralph JM, Bae JM, Vaughey JT |
63 - 67 |
Oxygen transport in La0.6Sr0.4Co0.2Fe0.8O3-delta/Ce0.8Ge0.2O2-x composite cathode for IT-SOFCs Esquirol A, Kilner J, Brandon N |
69 - 71 |
Mass transport in La1-xSrxFeO3(x=0 and 0. 1) measured by SIMS Waernhus I, Sakai N, Yokokawa H, Grande T, Einarsrud MA, Wiik K |
73 - 78 |
Copper doped lanthanum strontium ferrite for reduced temperature solid oxide fuel cells Coffey G, Hardy J, Marina O, Pederson L, Rieke P, Thomsen E |
79 - 81 |
Enhanced low temperature sintering of (Sr, Cu)-doped lanthanum ferrite SOFC cathodes Simner S, Anderson M, Bonnett J, Stevenson J |
83 - 86 |
Utilization of neutron diffraction and Mossbauer spectroscopy in the studies of the cathode for SOFCs Zhou XD, Cai Q, Yang J, Yelon WB, James WJ, Anderson HU |
87 - 92 |
Preparation and characterisation of supported La0.83Sr0.17Ga0.83Mg0.17O2.83 thick films for application in IT-SOFCs Pelosato R, Sora IN, Ferrari V, Dotelli G, Mari CM |
93 - 98 |
Mixed conduction and electrode properties of doped cobaltites and chromites Wiemhofer HD, Bremes HG, Nigge U |
99 - 102 |
Perovskite related cuprate phases as potential cathode materials for solid oxide fuel cells Sansom JEH, Rudge-Pickard HA, Smith G, Slater PR, Islam MS |
103 - 106 |
High temperature electrical conductivity of epitaxial Gd-doped CeO2 thin films Chen L, Chen CL, Huang DX, Lin Y, Chen X, Jacobson AJ |
107 - 111 |
Attempt of utilizing liquid fuels with Ni-SeSZ anode in SOFCs Kishimoto H, Horita T, Yamaji K, Xiong YP, Sakai N, Yokokawa H |
113 - 117 |
Electrochemical characterization of Ni-Ce0.9Gd0.1O2-delta for SOFC anodes Rosch B, Tu HY, Stormer AO, Muller AC, Stimming U |
119 - 121 |
High-temperature structure of Sc2O3-doped ZrO2 Arachi Y, Suzuki M, Asai T, Emura S, Kamiyama T, Izumi F |
123 - 127 |
Impedance spectroscopic estimation of intergranular-phase distribution in CaO center dot-2SiO(2)- or SiO2-in-diffused of 8 mol%-yttria-stabilized zirconia Jung YS, Choi JH, Lee JH, Lee JH, Kim DY |
129 - 133 |
Ga-69,Ga-71 and La-139 NMR characterisation of LaGaO3 and La1-xSrxGa1-xMgxO3-x Bastow TJ, Mathews T, Sellar JR |
135 - 138 |
Characterization of Cu-CeO2 direct hydrocarbon anodes in a solid oxide fuel cell with lanthanum gallate electrolyte An S, Lu C, Worrell WL, Gorte RJ, Vohs JM |
139 - 143 |
Solid oxide fuel cell using (Ba0.3Sr0.2La0.5)InO2.75 electrolyte Kakinuma K, Arisaka T, Yamamura H, Atake T |
145 - 149 |
The effect of mixed conductivity on the cathodic overpotential of LaGaO3-based fuel cell Yi JY, Choi GM |
151 - 155 |
Lanthanum-calcium chromites-titanates as possible anode materials for SOFC Vashook V, Vasylechko L, Zosel J, Muller R, Ahlborn E, Guth U |
157 - 163 |
Oxide scale formation of Fe-Cr alloys and oxygen diffusion in the scale Horita T, Yamaji K, Xiong YP, Kishimoto H, Sakai N, Yokokawa H |
165 - 169 |
Performance of anode-supported SOFCs fabricated with EPD techniques Yamaji K, Kishimoto H, Xiong YP, Horita T, Sakai N, Yokokawa H |
171 - 176 |
Characterization of YSZ-YST composites for SOFC anodes He HP, Huang YY, Vohs JM, Gorte RJ |
177 - 180 |
Preparation of Li4.4GexSi1-x alloys by mechanical milling process and their properties as anode materials in all-solid-state lithium batteries Hashimoto Y, Machida N, Shigematsu T |
181 - 184 |
Nanocrystalline SnO2 and In-doped SnO2 as anode materials for lithium batteries Subramanian V, Gnanasekar KI, Rambabu B |
185 - 190 |
Solid state NMR studies of phosphate/tin matrix formed on electrochemical insertion into SnP2O7 Attidekou PS, Connor PA, Wormald P, Tunstall DP, Francis SM, Irvine JTS |
191 - 193 |
The life and times of lithium in anatase TiO2 Wagemaker M, van Well AA, Kearley GJ, Mulder FM |
195 - 198 |
Interconnected macroporous TiO2 (anatase) as a lithium insertion electrode material Yamada H, Yamato T, Moriguchi I, Kudo T |
199 - 202 |
Analysis of layered structures of lithium-graphite intercalation compounds by one-dimensional Rietveld method Yao T, Ozawa N, Aikawa T, Yoshinaga S |
203 - 213 |
Influence of host electronic structure on lithium intercalation process Molenda J |
215 - 219 |
Amorphous silicon formed in situ as negative electrode reactant in lithium cells Netz A, Huggins RA |
221 - 224 |
Changes in the structure and physical properties of Li1-yNi0.5Mn0.4Ti0.1O2 (y=0 and 0.5) Kobayashi H, Arachi Y, Kageyama H, Sakaebe H, Tatsumi K, Mori D, Kanno R, Kamiyama T |
225 - 228 |
Investigation of layered intergrowth LixMyMn1-yO2+z (M=Ni, Co, Al) compounds as positive electrodes for Li-ion batteries Dolle M, Hollingsworth J, Richardson TJ, Doeff MM |
229 - 232 |
Changes in the structure and magnetic properties of Li1.08Mn1.92O4 after charge-discharge cycles with a 18650-type cylindrical battery Kobayashi H, Sakaebe H, Komoto K, Kaneko S, Kageyama H, Tabuchi M, Tatsumi K, Yonemura M, Kanno R, Kamiyama T |
233 - 237 |
A new promising sol-gel synthesis of phospho-olivines as environmentally friendly cathode materials for Li-ion cells Piana M, Cushing BL, Goodenough JB, Penazzi N |
239 - 242 |
Understanding mechanism of improved electrochemical performance of surface modified LiCoO2 Wang ZX, Dong H, Chen LQ, Mo YJ, Huang XJ |
243 - 245 |
Li/S fundamental chemistry and application to high-performance rechargeable batteries Akridge JR, Mikhaylik YV, White N |
247 - 250 |
Electrochemical properties of sulfur as cathode materials in a solid-state lithium battery with inorganic solid electrolytes Machida N, Kobayashi K, Nishikawa Y, Shigematsu T |
251 - 255 |
Crystalline Li3Po4/Li4SiO4 solid solutions as an electrolyte for film batteries using sputtered cathode layers Whitacre JF, West WC |
257 - 260 |
New sulfone electrolytes - Part II. Cyclo alkyl group containing sulfones Sun XG, Angell CA |
261 - 265 |
Ionic conductivity of lithium chloroboracite/polyethylene glycol composites Ikeda Y, Hiraoka T, Ohta S |
267 - 272 |
New lithium salts for rechargeable battery electrolytes Mandal B, Sooksimuang T, Griffin B, Padhi A, Filler R |
273 - 276 |
Preparation of amorphous lithium ion conductor thin films by pulsed laser deposition Kawamura J, Kuwata N, Toribami K, Sata N, Kamishima O, Hattori T |
277 - 280 |
Physical and electrochemical properties of new binary room-temperature molten salt electrolyte based on LiBETI and acetamide Hu YS, Wang ZX, Huang XJ, Chen LQ |
281 - 285 |
Size-dependent ionic conductivity observed for ordered mesoporous alumina-LiI composite Maekawa H, Tanaka R, Sato T, Fujimaki Y, Yamamura T |
287 - 290 |
Enhanced electrochemical performance of LiFePO4 prepared by hydrothermal reaction Tajimi S, Ikeda Y, Uematsu K, Toda K, Sato M |
291 - 295 |
Cycling behavior of LiNixCoyMn2-x-yO4 prepared by sol-gel route Stephan AM, Renganathan NG, Gopukumar S, Subramanian V, Bobba R |
297 - 304 |
The effect of 3d substitutions in the manganese sublattice on the electrical and electrochemical properties of manganese spinel Molenda J, Marzec J, Swierczek K, Palubiak D, Ojczyk W, Ziemnicki M |
305 - 309 |
Structural and electrochemical properties of Li[CoxLi(1/3-x/3)Mn(2/3-2x/3]O-2 cathode materials Park YJ, Wu XL, Hong YS, Ryu KS, Chang SH |
311 - 314 |
Li-7 MAS NMR studies of layered LixCoO2 prepared using eutectic self-mixing technique for a cathode material Lee Y, Woo A, Ryu KS, Park YJ, Jung BY, Lee JH, Han KS |
315 - 318 |
Synthesis and electrochemical properties of submicron LiNI0.5Co0.5O2 Subramanian V, Karki K, Rambabu B |
319 - 322 |
Oxide ionic and electronic conduction in Ni-doped LaGaO3-based oxide Ishihara T, Ishikawa S, Hosoi K, Nishiguchi H, Takita Y |
323 - 327 |
Significant hopping conduction and oxygen diffusion in implanted YSZ at low temperatures of 100-250 degrees C Raz S, Stelzer N, Kalish R, Maier J, Riess I |
329 - 333 |
Defects and phase transitions in yttria- and scandia-doped zirconia Weller M, Khelfaoui F, Kilo M, Taylor MA, Argirusis C, Borchardt G |
335 - 339 |
A new highly conducting fluorite phase in the bismuth-zirconium-niobate system Krok F, Abrahams I, Wrobel W, Chan SCM, Kozanecka A, Ossowski T, Dygas JR |
341 - 344 |
Electrical properties and defect structure of niobia-doped ceria Yashiro K, Suzuki I, Kaimai A, Matsumoto H, Nigara Y, Kawada T, Mizusaki J, Sfeir J, Van Herle J |
345 - 348 |
Electrical properties of the tungsten-doped Ba2In2O5 Shimura T, Yogo T |
349 - 352 |
Divalent cation solution in A(3+)B(3+)O(3) perovskites Levy MR, Steel BCH, Grimes RW |
353 - 355 |
Oxide ion conductivity in mixed Si/Ge-based apatite-type systems Sansom JEH, Najib A, Slater PR |
357 - 360 |
Single crystal growth and oxide ion conductivity of oxyapatite type Sr-bearing neodymium silicate Masubuchi Y, Higuchi M, Kikkawa S, Kodaira K, Nakayama S |
361 - 366 |
Preparation and sintering of Ce1-xGdxO2-x/2 nanopowders and their electrochemical and EPR characterization Sin A, Dubitsky Y, Zaopo A, Arico AS, Gullo L, La Rosa D, Siracusano S, Antonucci V, Oliva C, Ballabio O |
367 - 370 |
Estimation of theoretical oxygen permeation rate through La(Sr)Ga(Fe)O-3 mixed conductor Ishihara T, Ishikawa S, Furuno T, Yu CY, Ando M, Nishiguchi H, Takita Y |
371 - 374 |
The molecular dynamics study of oxygen mobility in La2-xSrxCUO4-delta Mazo GN, Savvin SN |
375 - 378 |
Solid state devices based on thin films of Cu2O show a new type of I-V relations Rosenstock Z, Feldman I, Riess I |
379 - 382 |
Preparation and oxygen permeability of Pr-Al-based perovskite-type oxides Takamura H, Enomoto K, Aizumi Y, Kamegawa A, Okada M |
383 - 386 |
In situ XRD study on oxygen-excess LaMnO3 Miyoshi S, Kaimai A, Matsumoto H, Yashiro K, Nigara Y, Kawada T, Mizusaki J |
387 - 391 |
Significant effect of water on surface reaction and related electrochemical properties of mixed conducting oxides Sakai N, Yamaji K, Horita T, Kishimoto H, Xiong YP, Yokokawa H |
393 - 397 |
Oxygen exchange kinetics of La0.4Sr0.6FeO3-delta by simultaneous application of conductivity relaxation and carrier gas coulometry Preis W, Bucher E, Sitte W |
399 - 403 |
Oxygen permeation in Sr- and Mg-doped LaAlO3 and Gd-doped CeO2 at high temperature Park HJ, Choi GM |
405 - 408 |
Oxygen permeation and electrical transport properties of 60 vol.% Bi1.6Y0.4O3 and 40 vol.% Ag composite prepared by the sol-gel method Kobayashi K, Tsunoda T |
409 - 413 |
Oxygen mobility in yttria-doped zirconia studied by internal friction, electrical conductivity and tracer diffusion experiments Weller M, Herzog R, Kilo M, Borchardt G, Weber S, Scherrer S |
415 - 417 |
Al2O3 solubility in the fast ion conductor 0.88ZrO(2)-(0-12-x)SC2O3-xAl(2)O(3) detennined by Al-27 NMR Bastow TJ, Mathews T, Sellar JR |
419 - 424 |
Time resolved in-situ neutron diffraction investigation of the electrochemical reduction of BIMEVOX Capoen E, Steil MC, Tancret N, Nowogrocki G, Boivin JC, Mairesse G, Vannier RN, Anne M, Isnard O |
425 - 429 |
Phase stabilization and electrical characterisation in the pseudo-binary system Bi2ZrO5-Bi2VO5.5-delta Wrobel W, Abrahams I, Krok F, Kozanecka A, Malys M, Bogusz W, Dygas JR |
431 - 435 |
Electrical properties of the surface layer formed on the Nb-doped SrTiO3 single crystal at low temperatures Han LQ, Kaimai A, Yashiro K, Nigara Y, Kawada T, Mizusaki J, Chen PP, Zhong CJ, Higuchi T |
437 - 439 |
The microstructure effect on the electrical and optical properties of undoped and Sr-doped SmCoO3 thin films Suzuki T, Jasinski P, Petrovsky V, Dogan F, Anderson HU |
441 - 444 |
A-deficient chromites-titanates with the perovskite-type structure: synthesis and electrical conductivity Vashook V, Zosel J, Preis W, Sitte W, Guth U |
445 - 449 |
Lithium and hydrogen ions transport in materials with NASICON structure Stenina IA, Pinus IY, Rebrov AI, Yaroslavtsev AB |
451 - 453 |
Solid electrolyte transition and conductivity in 0.1NaI-0.9AgI Lara DP, Vargas RA, Correa H |
455 - 458 |
Br- anion-conducting properties in La1-xMxOBr1-x solid (M=Ca, Sr) Kato Y, Imanaka N |
459 - 461 |
Effect of dispersed Al2O3 on the phase transitions and ionic conductivity of KHSO4 Diosa JE, Solis A, Vargas RA, Mellander BE |
463 - 466 |
Correlated motion of anions and cations in fast cation conducting rotor phases Wilmer D, Feldmann H, Lechner RE, Combet J |
467 - 470 |
Li+ ion conduction in (Gd, La)(2)O-3-LiNO3 system Tamura S, Mori A, Imanaka N |
471 - 476 |
Correlation of electrical and mechanical properties of zirconia based thermal barrier coatings Hilpert T, Ivers-Tiffee E |
477 - 481 |
Reflection spectra of mixed-cation beta-aluminas in ultraviolet and vacuum-ultraviolet regions Hattori T, Yashima S, Kawaharada I, Sata N, Ishigame M, Shin S |
483 - 485 |
Preparation of dense electrolyte layer using dissociated oxygen electrochemical vapor deposition technique Mineshige A, Fukushima K, Tsukada K, Kobune M, Yazawa T, Kikuchi K, Inaba M, Ogumi Z |
487 - 490 |
Solid state ionic devices for combustion gas sensing Garzon FH, Mukundan R, Lujan R, Brosha EL |
491 - 495 |
Hydrogen isotope sensor using high temperature proton conductors Matsumoto H, Hayashi H, Shimura T, Amezawa K, Otake T, Yashiro K, Nigara Y, Kaimai A, Kawada T, Iwahara H, Mizusaki J |
497 - 501 |
A low temperature sensor for the detection of carbon monoxide in hydrogen Mukundan R, Brosha EL, Garzon FH |
503 - 506 |
Improvement of sensing performances of zirconia-based total NOx sensor by attachment of oxidation-catalyst electrode Ono T, Hasei M, Kunimoto A, Miura N |
507 - 510 |
Characteristics of MnOx electrochemical capacitors with solid electrolyte (CsHSO4) operated at elevated temperatures Kuzuoka Y, Wen CJ, Otomo J, Ogura M, Kobayashi T, Yamada K, Takahashi H |
511 - 515 |
Mesoporous anhydrous RuO2 as a supercapacitor electrode material Subramanian V, Hall SC, Smith PH, Rambabu B |
517 - 520 |
Multilayered composite Au-NiOx electrochromic films Ferreira FF, Fantini MCA |
521 - 525 |
Charging and diffusional aspects of Li+ insertion in electrochromic a-WO3 Garcia-Canadas J, Fabregat-Santiago F, Porqueras I, Person C, Bisquert J, Garcia-Belmonte G |
527 - 530 |
Electrochemical hydrogen sensor for safety monitoring Martin LP, Pham AQ, Glass RS |
531 - 533 |
Response behavior of perovskites and Au/oxide composites as HC-electrodes in different combustibles Zosel J, Miller R, Vashook V, Guth U |
535 - 539 |
A simple model for solid polymer electrolyte (SPE) water electrolysis Choi PH, Bessarabov DG, Datta R |
541 - 544 |
Direct fabrication and patterning of Cu2O film by local electrodeposition method Fujiwara T, Nakaue T, Yoshimura M |
545 - 548 |
Proton conduction in polymer gel electrolytes containing chloroacetic acids Sekhon SS, Singh HP |
549 - 552 |
Electronic structure of protonic conductor SrCeO3 by soft-X-ray spectroscopy Higuchi T, Tsukamoto T, Sata N, Hattori T, Yamaguchi S, Shin S |
553 - 555 |
Proton conduction in doped LaScO3 perovskites Nomura K, Takeuchi T, Kamo S, Kageyama H, Miyazaki Y |
557 - 562 |
Superprotonic conductor CsH2PO4 studied by H-1, P-31 NMR and X-ray diffraction Yamada K, Sagara T, Yamane Y, Ohki H, Okuda T |
563 - 567 |
Protonic conduction in Sr-doped (La1-xSmx)PO4 Kitamura N, Amezawa K, Tomii Y, Yamamoto N, Hanada T |
569 - 573 |
High-temperature protonic conduction in La7P3O18 Amezawa A, Tomii Y, Yamamoto N |
575 - 579 |
High temperature protonic conduction in LaBO3 with the aragonite-type structure Amezawa K, Takahashi N, Kitamura N, Tomii Y, Yamamoto N |
581 - 584 |
Anhydrous proton conductivity in hydrogen alkali thiogermanates Poling SA, Nelson CR, Martin SW |
585 - 588 |
Preparation, sintering, and water incorporation of proton conducting Ba0.99Zr0.8Y0.2O3-delta: comparison between three different synthesis techniques Magrez A, Schober T |
589 - 592 |
Preparation of the SrCe0.95Yb0.05O3-alpha proton conductor and study of the electrokinetics at the SrCe0.95Yb0.05O3-alpha/Pd interface Zisekas S, Dedeloudis C, Stournaras C, Stoukides M |
593 - 596 |
Chemical stability of SrCe0.95Yb0.05O3-alpha in hydrogen atmosphere at elevated temperatures Okada S, Mineshige A, Takasak A, Kobune M, Yazawa T, Matsumoto H, Shimura T, Iwahara H, Ogumi Z |
597 - 603 |
Catalytic studies in electrochemical membrane reactors Marnellos G, Stoukides M |
605 - 608 |
NOx decomposition by electrochemical reactor with electrochemically assembled multilayer electrode Awano M, Bredikhin S, Aronin A, Abrosimova G, Katayama S, Hiramatsu T |
609 - 613 |
In-situ electrochemical control of the catalytic activity of platinum for the propene oxidation Vernoux P, Gaillard F, Lopez C, Siebert E |
615 - 619 |
Study of carbon dioxide electrolysis at electrode/electrolyte interface: Part I. Pt/YSZ interface Tao G, Sridhar KR, Chan CL |
621 - 624 |
Study of carbon dioxide electrolysis at electrode/electrolyte interface: Part II. Pt-YSZ cermet/YSZ interface Tao G, Sridhar KR, Chan CL |
625 - 629 |
NO decomposition over the electrochemical cell of lanthanum stannate pyrochlore and YSZ composite electrode Park S, Song HS, Choi HJ, Moon J |
631 - 635 |
Nano-tube TiO2 composite PVdF/LiPF6 solid membranes Chiang CY, Reddy MJ, Chu PP |
637 - 640 |
Mechanochemical synthesis of amorphous solid electrolytes using SiS2 and various lithium compounds Hayashi A, Iio K, Morimoto H, Minami T, Tatsumisago M |
641 - 649 |
Influence of particle morphology on nanostructural feature and conducting property in Sm-doped CeO2 sintered body Mori T, Wang YR, Drennan J, Auchterlonie G, Li JG, Ikegami T |
651 - 654 |
Synthesis and room temperature photo luminescence of AgI nanoparticles embedded in silica sol-gel coating He HP, Wang YX, Chen HW |
655 - 659 |
Proton conductivity in a new class of H2S modified thioborate-based glasses and ceramics Karthikeyan A, Martindale CA, Martin SW |
661 - 663 |
Dielectric function and localized diffusion in ion conducting glasses Banhatti RD, Funke K |
665 - 669 |
Structure conductivity correlation in reverse Monte Carlo models of single and mixed alkali glasses Adams S, Swenson J |
671 - 674 |
Ionic conduction and medium range order in superionic conducting glasses Takahashi H, Rikitake N, Sakuma T, Ishii Y |
675 - 677 |
Effective Debye-Waller temperature parameter in superionic conducting AgI-AgPO3 glasses Thazin A, Fujishima Y, Arai M, Sakuma T, Takahashi H |
679 - 682 |
Non-Arrhenius ionic conductivity in alpha-Agl-stabilized composites and rapid quenched glasses Kuwata N, Saito T, Tatsumisago M, Minami T, Kawamura J |
683 - 686 |
Characterization of Li2S-P2S5 glass-ceramics as a solid electrolyte for lithium secondary batteries Hayashi A, Hama S, Mizuno F, Tadanaga K, Minami T, Tatsumisago M |
687 - 690 |
Li-ion conductivity in Li2O-B2O3-V2O5 glass system Lee YI, Lee JH, Hong SH, Park YS |
691 - 694 |
Enhancement of electrical conductivity in lithium vanadate glasses by nano crystallization Garbarczyk JE, Jozwiak P, Wasiucionek M |
695 - 698 |
Mixed ionic and electronic conductivity of oxides from molten state to glassy state: application to RuO2-glass composites Simonnet C, Grandjean A, Malki M |
699 - 702 |
All-solid-state lithium secondary batteries using Li2S-SiS2-Li4SiO4 glasses and Li2S-P2S5 glass ceramics as solid electrolytes Mizuno F, Hayashi A, Tadanaga K, Minami T, Tatsumisago M |
703 - 706 |
Formation reactions for thiogermanic acids from GeO2 and GeS2 precursors Sutherland JI, Poling SA, Nelson CR, Martin SW |
707 - 711 |
A mixed-former effect on lithium-ion conductivities of the Li2S-GeS2-P2S5 amorphous materials prepared by a high-energy ball-milling process Yamamoto H, Machida N, Shigematsu T |
713 - 716 |
New gel polyelectrolytes for rechargeable lithium batteries Sun XG, Liu G, Xie JB, Han YB, Kerr JB |
717 - 720 |
Highly conductive, organic plastic crystals based on pyrazolium imides Alarco PJ, Abu-Lebdeh Y, Armand M |
721 - 724 |
Nanoscale lithium ion conducting polyethylene oxide with self-attached insulating layers Liu G, Reinhout MT, Baker GL |
725 - 728 |
Dependence of force produced by polypyrrole-based artificial muscles on ionic species involved Careem MA, Vidanapathirana KP, Skaarup S, West K |
729 - 732 |
Effect of water vapor on the ion transport in polymer films of PVOH/LiH2PO4/H2O Vargas RA, Zapata V, Delgado ML, Palacios I |
733 - 738 |
Ionic conduction in doped succinonitrile Long S, MacFarlane DR, Forsyth M |
739 - 742 |
Polymer electrolytes based on poly(ethyleye oxide) and cross-linked poly(ethylene oxide-co-propylene oxide) Wen ZY, Itoh T, Uno T, Kubo M, Wen TL, Yamamoto O |
743 - 746 |
New single ion conductors ("polyBOP" and analogs) for rechargeable lithium batteries Sun XG, Angell CA |
747 - 750 |
Porous PVDF with LiClO4 complex as'solid' and'wet' polymer electrolyte Shen YJ, Reddy MJ, Chu PP |
751 - 754 |
Organic solvent control of inorganic structure: a one-dimensional zirconium phosphate inorganic polymer Wang D, Yu RB, Xing XR, Chen YF, Guoa ZC, Kumada N, Kinomura N, Takano M |
755 - 758 |
Morphological, rheological and electrochemical studies of Poly(ethylene oxide) electrolytes containing fumed silica nanoparticles Xie JB, Duan RG, Han YB, Kerr JB |
759 - 763 |
Polyaniline doped with dimethylsultate as a polymer electrode for all solid-state power source system Ryu KS, Hong YS, Park YJ, Wua XG, Kim KM, Lee YG, Chang SH, Lee SJ |
765 - 768 |
Electrochemical supercapacitor based on polyaniline doped with lithium salt and active carbon electrodes Ryu KS, Lee YG, Han KS, Park YJ, Kang MG, Park NG, Chang SH |
769 - 772 |
Ionic conduction in photosensitive biocomplex of Acacia Arabica Mallik H, Mukhopadhyay P, Sarkar A |
773 - 780 |
Polymer electrolytes confined in nanopores: using water as a means to explore the interfacial impedance at the nanoscale Layson AR, Teeters D |
781 - 783 |
Diffusion coefficients in trimethyleneoxide containing comb branch polymer electrolytes Liu G, Reeder CL, Sun XG, Kerr JB |
785 - 788 |
Evaluation of macromonomer-based gel polymer electrolyte for high-power applications Oh B, Amine K |
789 - 795 |
The influence of size scale on the performance of fuel cells Cha SW, O'Hayre R, Prinz FB |
797 - 803 |
Pt-based anode catalysts for direct ethanol fuel cells Zhou WJ, Song SQ, Li WZ, Sun GQ, Xin Q, Kontou S, Poulianitis K, Tsiakaras P |
805 - 808 |
Effect of monomeric sequence on nanostructure and water dynamics in Nafion 117 Jang SS, Molinero V, Cagin T, Goddard WA |
809 - 813 |
Influence of metal-support interaction in Pt/C on CO and methanol oxidation reactions Hall SC, Subramanian V, Teeter G, Rambabu B |
815 - 817 |
Phenomenological methanol sorption model for Nafion (R) 117 Jalani NH, Cho PG, Datta R |
819 - 822 |
Nearly constant loss behavior in gamma-RbAg4I5: microwave conductivity plateau identified Funke K, Ross I, Banhatti RD |
823 - 827 |
Modeling of cation diffusion in oxygen ion conductors using molecular dynamics Kilo M, Taylor MA, Argirusis C, Borchardt G, Jackson RA, Schulz O, Martin M, Weller M |
829 - 834 |
First principles predictions for intercalation behaviour Koudriachova MV, Harrison NM, de Leeuw SW |
835 - 839 |
Modeling of lithium ion cells - A simple equivalent-circuit model approach Liaw BY, Nagasubramanian G, Jungst RG, Doughty DH |
841 - 845 |
p-d hybridization, layered structure, and tetrahedral analysis in superionic conductors Kobayashi M, Ono S, Nomura K, Yokoyama Y, Ogawa H |
847 - 850 |
Electronic structure of the electrode/electrolyte interface: large-scale tight-binding quantum chemical simulation Makino Y, Kusagaya T, Suzuki K, Endou A, Kubo M, Selvam P, Ota H, Yonekawa F, Yamazaki N, Miyamoto A |
851 - 855 |
Ionic conduction in LiI-alpha, gamma-alumina: molecular dynamics study Chung RWJMHF, de Leeuw SW |
857 - 860 |
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