203 - 207 |
The Bourner lecture - Power sources and the new energy economy Irvine JTS |
208 - 210 |
Expanded graphite as an electrode material for an alcohol fuel cell Bhattacharya A, Hazra A, Chatterjee S, Sen P, Laha S, Basumallick I |
211 - 214 |
Gasification of diesel oil in supercritical water for fuel cells Pinkwart K, Bayha T, Lutter W, Krausa M |
215 - 219 |
Can refillable alkaline methanol-air systems replace metal-air cells? Koscher G, Kordesch K |
220 - 225 |
Portable fuel cell systems for America's army: technology transition to the field Patil AS, Dubois TG, Sifer N, Bostic E, Gardner K, Quah M, Bolton C |
226 - 231 |
Magnesium-solution phase catholyte semi-fuel cell for undersea vehicles Medeiros MG, Bessette RR, Deschenes CM, Patrissi CJ, Carreiro LG, Tucker SP, Atwater DW |
232 - 239 |
CLIPPER: a long-range, autonomous underwater vehicle using magnesium fuel and oxygen from the sea Hasvold O, Lian T, Haakaas E, Storkersen N, Perelman O, Cordier S |
240 - 245 |
Long-life, multi-tap thermal battery development Butler P, Wagner C, Guidotti R, Francis I |
246 - 249 |
Multiple model impedance spectroscopy techniques for testing electrochemical systems Tinnemeyer JA |
250 - 256 |
High voltage electrochemical double layer capacitors using conductive carbons as additives Michael MS, Prabaharan SRS |
257 - 262 |
Overview of high-temperature batteries for geothermal and oil/gas borehole power sources Guidotti RA, Reinhardt FW, Odinek J |
263 - 267 |
Battery and capacitor technology for uniform charge time in implantable cardioverter-defibrillators Skarstad PM |
268 - 275 |
High-energy, high-power Pulses Plus (TM) battery for long-term applications Menachem C, Yamin H |
276 - 280 |
Lithium-ion/iron sulphide rechargeable batteries Ritchie AG, Bowles G, Scattergood DP |
281 - 284 |
Synthesis, characterization and lithium electrochemical insertion into antimony-based graphite composites Dailly A, Ghanbaja J, Willmann P, Billaud D |
285 - 289 |
Recent developments and likely advances in lithium rechargeable batteries Ritchie AG |
290 - 295 |
Diffusion of lithium in electrodeposited vanadium oxides Andrukaitis E, Hill I |
296 - 302 |
On the influence of additives in electrolyte solutions on the electrochemical behavior of carbon/LiCoO2 cells at elevated temperatures Markovsky B, Nimberger A, Talyosef Y, Rodkin A, Belostotskii AM, Salitra G, Aurbach D, Kim HJ |
303 - 306 |
A thin film silicon anode for Li-ion batteries having a very large specific capacity and long cycle life Ohara S, Suzuki J, Sekine K, Takamura T |
307 - 316 |
Historical performance of nickel/cadmium and nickel/metal hydride geosynchronous-orbit packs and determination of voltage/temperature levels for advanced nickel/cadmium designs Lewis H, Hwang W, Manzo M |
317 - 321 |
Performance and electrochemical characterization studies of advanced high-power bipolar nickel/metal hydride batteries Klein M, Eskra M, Plivelich R, Salkind AJ, Ockerman J |
322 - 333 |
Fuzzy logic modelling of state-of-charge and available capacity of nickel/metal hydride batteries Singh P, Fennie C, Reisner D |
334 - 345 |
Peculiarities and requirements of asymmetric capacitor devices based on combination of capacitor and battery-type electrodes Pell WG, Conway BE |
346 - 350 |
Hydrogen diffusion in the anode of Ni/MH secondary batteries Feng F, Northwood DO |
351 - 355 |
Standby-battery autonomy versus power quality Bitterlin IF |
356 - 365 |
Thomas Alva Edison - battery and device innovation in response to application's needs Salkind AJ, Israel P |
366 - 371 |
The performance of Ebonex((R)) electrodes in bipolar lead-acid batteries Ellis K, Hill A, Hill J, Loyns A, Partington T |
372 - 375 |
The sealed lead-acid battery: performance and present aircraft applications Timmons J, Kurian R, Goodman A, Johnson WR |
376 - 382 |
Development of ultra high power, valve-regulated lead-acid batteries for industrial applications Soria ML, Valenciano J, Ojeda A |
383 - 385 |
Lithium accumulator for high-power applications Berger T, Dreher J, Krausa M, Tubke J |
386 - 394 |
Li-ion batteries and portable power source prospects for the next 5-10 years Broussely M, Archdale G |
395 - 400 |
Electrical characterization of all-solid-state thin film batteries Nagasubramanian G, Doughty DH |
401 - 407 |
Switch array system for thin film lithium microbatteries Sukumar V, Alahmad M, Buck K, Hess H, Li H, Cox D, Zghoul FN, Jackson J, Terry S, Blalock B, Mojarradi MM, West WC, Whitacre JF |
408 - 415 |
Rechargeable lithium battery employing a new ambient temperature hybrid polymer electrolyte based on PVK plus PVdF-HFP (copolymer) Michael MS, Prabaharan SRS |
416 - 418 |
High power and high energy lithium-ion batteries for under-water applications Gitzendanner R, Puglia F, Martin C, Carmen D, Jones E, Eaves S |