1 - 7 |
Effect of solute dispersion on microstructure and electrical conductivity of Ce0.85Y0.13Pr0.02O2-delta solid electrolyte Tadokoro SK, Muccillo ENS |
8 - 17 |
Evaluation of the thickness of membrane and gas diffusion layer with simplified two-dimensional reaction and flow analysis of polymer electrolyte fuel cell Inoue G, Matsukuma Y, Minemoto M |
18 - 34 |
Evaluation of the optimal separator shape with reaction and flow analysis of polymer electrolyte fuel cell Inoue G, Matsukuma Y, Minemoto M |
35 - 41 |
Performance characteristics of micro single-chamber solid oxide fuel cell: Computational analysis Chung CY, Chung YC |
42 - 50 |
Influence of composition and Cu impregnation method on the performance of Cu/CeO2/YSZ SOFC anodes Jung SW, Lu C, He HP, Ahn KY, Gorte RJ, Vohs JM |
51 - 58 |
Proton exchange membranes based on PVDF/SEBS blends Mokrini A, Huneault MA |
59 - 65 |
A systematic study on the effect of OH- and Ni2+ ions on the electro-catalytic oxidation of methanol at Ni-S-1 electrode Rahim MAA, Hassan HB, Hamid RMA |
66 - 66 |
There is a mistake in Chen's model published in volume 128 Wang HX, Wang YX |
67 - 73 |
Reforming options for hydrogen production from fossil fuels for PEM fuel cells Ersoz A, Olgun H, Ozdogan S |
74 - 85 |
Mechanistic modelling of a cathode-supported tubular solid oxide fuel cell Suwanwarangkul R, Croiset E, Pritzker MD, Fowler MW, Douglas PL, Entchev E |
86 - 94 |
Performance of planar free-breathing PEMFC at temperatures below freezing Hottinen T, Himanen O, Lund P |
95 - 105 |
Ex situ visualization of liquid water transport in PEM fuel cell gas diffusion layers Litster S, Sinton D, Djilali N |
106 - 114 |
Dual-phase electrolytes for advanced fuel cells Hu JG, Tosto S, Guo ZX, Wang WF |
115 - 123 |
Evaluation of composite membranes for direct methanol fuel cells Li X, Roberts EPL, Holmes SM |
124 - 137 |
Liquid water transport in parallel serpentine channels with manifolds on cathode side of a PEM fuel cell stack Jiao K, Zhou B, Quan P |
138 - 144 |
Dependence of high-temperature PEM fuel cell performance on Nafion (R) content Song Y, Xu H, Wei Y, Kunz HR, Bonville LJ, Fenton JA |
145 - 152 |
A method for the identification of solid oxide fuel cells using a Hammerstein model Jurado F |
153 - 170 |
Transfer function analysis of the dynamic behaviour of DMFCs: Response to step changes in cell current Krewer U, Sundmacher K |
171 - 179 |
Current distribution mapping in polymer electrolyte fuel cells - A finite element analysis of measurement uncertainty imposed by lateral currents Eckl R, Grinzinger R, Lehnert W |
180 - 183 |
Bi-layer structures as solid oxide fuel cell interconnections Huang WH, Gopalan S |
184 - 191 |
In situ approach for current distribution measurement in fuel cells Ghosh PC, Wuster T, Dohle H, Kimiaie N, Mergel J, Stolten D |
192 - 197 |
Modelling fuel cell performance using artificial intelligence Ogaji SOT, Singh R, Pilidis P, Diacakis M |
198 - 201 |
Realization of porous silicon based miniature fuel cells Pichonat T, Gauthier-Manuel B |
202 - 213 |
Architecture for portable direct liquid fuel cells Qian WM, Wilkinson DP, Shen J, Wang HJ, Zhang JJ |
214 - 222 |
A gasoline fuel processor designed to study quick-start performance Ahmed S, Ahluwalia R, Lee SHD, Lottes S |
223 - 231 |
Catalytic autothermal reforming of diesel fuel for hydrogen generation in fuel cells II. Catalyst poisoning and characterization studies Cheekatamarla PK, Lane AM |
232 - 238 |
Developments of high-voltage all-solid-state thin-film lithium ion batteries Schwenzel J, Thangadurai V, Weppner W |
239 - 245 |
Synthesis and electrochemical properties of LiAl0.1Mn1.9O4 by microwave-assisted sol-gel method Bao SJ, Liang YY, Zhou WH, He BL, Li HL |
246 - 254 |
Electrochemical properties of aryladamantanes as new overcharge protection compounds for lithium cells Watanabe Y, Morimoto H, Tobishima S |
255 - 261 |
Ionic liquid and plastic crystalline phases of pyrazolium imide salts as electrolytes for rechargeable lithium-ion batteries Abu-Lebdeh Y, Abouimrane A, Alarco PJ, Armand M |
262 - 267 |
Synthesis and electrochemical properties of LiNi0.80(Co0.20-xAlx)O-2 (x=0.0 and 0.05) cathodes for Li ion rechargeable batteries Majumder SB, Nieto S, Katiyar RS |
268 - 272 |
Enhancement of the electrochemical properties of o-LiMnO2 cathodes at elevated temperature by lithium and fluorine additions Kim TJ, Son D, Cho J, Park B |
273 - 275 |
Correlation of oxygen deficiency with discharge capacity at 3.2 V for (LiMn)(3)O4-z Yoshio M, Noguchi H, Wang HY, Wang XQ |
276 - 280 |
LiBOB-based gel electrolyte Li-ion battery for high temperature operation Zhang SS, Xu K, Jow TR |
281 - 286 |
Performance of a polyaniline(DMcT)/carbon fiber composite as cathode for rechargeable lithium batteries Canobre SC, Davoglio RA, Biaggio SR, Rocha RC, Bocchi N |
287 - 289 |
Electrical conductivity and rate-capability of Li4Ti5O12 as a function of heat-treatment atmosphere Wolfenstine J, Lee U, Allen JL |
290 - 297 |
Crystallographic and electrochemical characteristics of La0.7Mg0.3Ni3.5-x (Al0.5Mo0.5)(x) (x=0-0.8) hydrogen storage alloys Zhang XB, Sun DZ, Yin WY, Chai YJ, Zhao MS |
298 - 307 |
New dry and wet Zn-polyaniline bipolar batteries and prediction of voltage and capacity by ANN Karami H, Mousavi MF, Sharnsipur M, Riahi S |
308 - 313 |
An electronic load for testing photovoltaic panels Kuai Y, Yuvarajan S |
314 - 320 |
On the specific double-layer capacitance of activated carbons, in relation to their structural and chemical properties Centeno TA, Stoeckli F |
321 - 321 |
Capacity fading of lithiated graphite electrodes studied by a combination of electroanalytical methods, Raman spectroscopy and SEM (vol 146, pg 146, 2005) Markevich E, Salitra G, Levi MD, Aurbach D |
322 - 323 |
Preparation of Cu/ZnO/Al2O3 catalyst for a micro methanol reformer Kawamura Y, Yamamoto K, Ogura N, Katsumata T, Igarashi A |
324 - 325 |
Theoretical analysis of the role of interfaces in transport through oxygen ion and electron conducting membranes (vol 147, pg 8, 2005) Virkar AV |