253 - 261 |
An Op Amp transfer circuit to measure voltages in battery strings Wang X, Stuart T |
262 - 275 |
Synthesis, structural and electrochemical characterizations of the sol-gel birnessite MnO1.84 center dot 0.6H(2)O Franger S, Bach S, Farcy J, Pereira-Ramos JP, Baffier N |
276 - 280 |
Investigation of the height and rate of capillary lift of electrolyte in the glass-mat separator of a sealed lead-acid battery Kamenev Y, Lushina M, Ostapenko E |
281 - 286 |
Microelectrochemistry study of metal-hydride battery materials - Cycling behavior of LaNi3.55Mn0.4Al0.3Co0.75 compared with LaNi5 and its mono-substituted derivatives Merzouki A, Cachet-Vivier C, Vivier V, Nedelec JY, Yu LT, Haddaoui N, Joubert JM, Percheron-Guegan A |
287 - 293 |
Performance evaluation of an energy recovery system for fuel reforming of PEM fuel cell power plants Cao YD, Guo Z |
294 - 300 |
Analysis for electrolytic oxidation and reduction of PbSO4/Pb electrode by electrochemical QCM technique Taguchi M, Sugita H |
301 - 307 |
Luminescence in some lithiated transition metal oxide cathodes Kalyani P, Jagannathan R, Gopukumar S, Lu CH |
308 - 312 |
Electrochemical reaction of lithium with CoP3 Alcantara R, Tirado JL, Jumas JC, Monconduit L, Olivier-Fourcade J |
313 - 320 |
Thermal impedance spectroscopy for Li-ion batteries using heat-pulse response analysis Barsoukov E, Jang JH, Lee H |
321 - 326 |
Thermal stability of propylene carbonate and ethylene carbonate-propylene carbonate-based electrolytes for use in Li cells Katayama N, Kawamura T, Baba Y, Yamaki J |
327 - 332 |
Redox reaction in 1-ethyl-3-methylimidazolium-iron chlorides molten salt system for battery application Katayama Y, Konishiike I, Miura T, Kishi T |
333 - 339 |
Electrochemical properties of LiM1/6Mn11/6O4 (M = Mn, Co, Al and Ni) as cathode materials for Li-ion batteries prepared by ultrasonic spray pyrolysis method Taniguchi I, Song D, Wakihara M |
340 - 346 |
Ion pair formation and its effect in PEO : Mg solid polymer electrolyte system Reddy MJ, Chu PP |
347 - 355 |
Creep behavior of Ni-12 wt.% Al anodes for molten carbonate fuel cells Kim D, Lee I, Lim H, Lee D |
356 - 364 |
Investigation of PEMFC operation above 100 degrees C employing perfluorosulfonic acid silicon oxide composite membranes Adjemian KT, Srinivasan S, Benziger J, Bocarsly AB |
365 - 376 |
Simulating process settings for unslaved SOFC response to increases in load demand Haynes C |
377 - 387 |
Study of polypyrrole graphite composite as anode material for secondary lithium-ion batteries Veeraraghavan B, Paul J, Haran B, Popov B |
388 - 393 |
Effect of polymer blending and drawing conditions on properties of polyethylene separator prepared for Li-ion secondary battery Ihm D, Noh J, Kim J |
394 - 402 |
Development of 10-kWe preferential oxidation system for fuel cell vehicles Lee SH, Han JS, Lee KY |
403 - 411 |
Studies of the activated carbons used in double-layer supercapacitors Qu DY |
412 - 417 |
Characteristics of the Nafion ionomer-impregnated composite membrane for polymer electrolyte fuel cells Shim J, Ha HY, Hong SA, Oh IH |
418 - 421 |
Enhanced performance of SnO2 xerogel electrochemical capacitor prepared by novel crystallization process Wu NL, Han CY, Kuo SL |
422 - 426 |
Study of poly (acrylonitrile-methyl methacrylate) as binder for graphite anode and LiMn2O4 cathode of Li-ion batteries Zhang SS, Jow TR |
427 - 430 |
Synthesis and electrochemical characteristics of LiCrxNi0.5-xMn1.5O4 spinel as 5 V cathode materials for lithium secondary batteries Hong KJ, Sun YK |
431 - 438 |
Redox potentials and kinetics of the Ce3+/Ce4+ redox reaction and solubility of cerium sulfates in sulfuric acid solutions Paulenova A, Creager SE, Navratil JD, Wei Y |
439 - 445 |
New RuO2 and carbon-RuO2 composite diffusion layer for use in direct methanol fuel cells Park KW, Kwon BK, Choi JH, Park IS, Kim YM, Sung YE |
446 - 451 |
Effects of carbon pretreatment for oxygen reduction in alkaline electrolyte Pirjamali M, Kiros Y |
452 - 457 |
Identification and characterization of parameters for external humidification used in polymer electrolyte membrane fuel cells Rajalakshmi N, Sridhar P, Dhathathreyan KS |
458 - 464 |
Aluminum corrosion in electrolyte of Li-ion battery Zhang SS, Jow TR |
465 - 468 |
High power BaFe(VI)O-4/MnO2 composite cathode alkaline super-iron batteries Licht S, Ghosh S |
469 - 476 |
PEM fuel cell stacks operated under dry-reactant conditions Qi ZG, Kaufman A |
477 - 482 |
Effects of the carbon powder characteristics in the cathode gas diffusion layer on the performance of polymer electrolyte fuel cells Antolini E, Passos RR, Ticianelli EA |
483 - 493 |
A sharp peak in the performance of sputtered platinum fuel cells at ultra-low platinum loading O'Hayre R, Lee SJ, Cha SW, Prinz FB |
494 - 499 |
Preparation, characterization and electrolytic behavior of beta-nickel hydroxide Acharya R, Subbaiah T, Anand S, Das RP |
500 - 506 |
All-solid-state supercapacitor using a Nafion (R) polymer membrane and its hybridization with a direct methanol fuel cell Park KW, Ahn HJ, Sung YE |
507 - 514 |
Functionalized SiO2 in poly(ethylene oxide)-based polymer electrolytes Liu Y, Lee JY, Hong L |