1 - 10 |
Development of lanthanum ferrite SOFC cathodes Simner SP, Bonnett JR, Canfield NL, Meinhardt KD, Shelton JP, Sprenkle VL, Stevenson JW |
11 - 18 |
Effect of channel dimensions and shape in the flow-field distributor on the performance of polymer electrolyte membrane fuel cells Kumar A, Reddy RG |
19 - 36 |
Catalytic burner for an indirect methanol fuel cell vehicle fuel processor Sundaresan M, Ramaswamy S, Moore RM, Hoffman MA |
37 - 43 |
Low Pt loading high performance cathodes for PEM fuel cells Qi ZG, Kaufman A |
44 - 56 |
A simple model for interconnect design of planar solid oxide fuel cells Tanner CW, Virkar AV |
57 - 61 |
A new polymer/polymer rechargeable battery: polyaniline/LiClO4(MeCN)/poly-1-naphthol Rehan HH |
62 - 71 |
Characteristics and performance of 500 F asymmetric hybrid advanced supercapacitor prototypes Du Pasquier A, Plitz I, Gural J, Menocal S, Amatucci G |
72 - 80 |
Simulation of capacity fade in lithium-ion batteries Spotnitz R |
81 - 100 |
Abuse behavior of high-power, lithium-ion cells Spotnitz R, Franklin J |
101 - 108 |
In-plane gradients in fuel cell structure and conditions for higher performance Wilkinson DP, St-Pierre J |
109 - 114 |
Three-dimensional thermo-fluid electrochemical modeling of planar SOFC stacks Recknagle KP, Williford RE, Chick LA, Rector DR, Khaleel MA |
115 - 123 |
CO-tolerance of low-loaded Pt/Ru anodes for PEM fuel cells Qi ZG, Kaufman A |
124 - 130 |
Structural considerations of intermetallic electrodes for lithium batteries Thackeray MM, Vaughey JT, Johnson CS, Kropf AJ, Benedek R, Fransson LML, Edstrom K |
131 - 144 |
Modelling static and dynamic behaviour of proton exchange membrane fuel cells on the basis of electro-chemical description Ceraolo M, Miulli C, Pozio A |
145 - 150 |
Development of high-power electrodes for a liquid-feed direct methanol fuel cell Lim C, Wang CY |
151 - 156 |
Hydrogen absorption studies of an over-stoichiometric zirconium-based AB(2) alloy Triaca WE, Peretti HA, Corso HL, Bonesi A, Visintin A |
157 - 165 |
Anthracite as a candidate for lithium ion battery anode Kim YJ, Yang HJ, Yoon SH, Korai Y, Mochida I, Ku CH |
166 - 172 |
Tris(2,2,2-trifluoroethyl) phosphite as a co-solvent for nonflammable electrolytes in Li-ion batteries Zhang SS, Xu K, Jow TR |
173 - 178 |
Electrochemical capacitor of magnetite in aqueous electrolytes Wu NL, Wang SY, Han CY, Wu DS, Shiue LR |
179 - 183 |
Lithium-free transition metal phosphate cathode for Li secondary batteries Manickam M |