1 - 7 |
Characterisation of the SOFC material, LaCrO3, using vibrational spectroscopy Tompsett GA, Sammes NM |
8 - 14 |
High power density direct formic acid fuel cells Zhu YM, Ha SY, Masel RI |
15 - 21 |
Synthesis, sintering and impedance spectroscopy of 8 mol% yttria-doped ceria solid electrolyte Tadokoro SK, Porfirio TC, Muccillo R, Muccillo ENS |
22 - 29 |
Transport of methanol and water through Nafion membranes Barragan VM, Ruiz-Bauza C, Villaluenga JPG, Seoane B |
30 - 37 |
Production of hydrogen for fuel cells by catalytic partial oxidation of ethanol over structured Ni catalysts Liguras DK, Goundani K, Verykios XE |
38 - 41 |
Elastic properties of Sr- and Mg-doped lanthanum gallate at elevated temperature Okamura T, Shimizu S, Mogi M, Tanimura M, Furuya K, Munakata F |
42 - 49 |
Analysis of electrocatalyst degradation in PEMFC caused by cell reversal during fuel starvation Taniguchi A, Akita T, Yasuda K, Miyazaki Y |
50 - 55 |
Oxygen reduction on platinum electrode coated with Nafion((R)) Ayad A, Naimi Y, Bouet J, Fauvarque JF |
56 - 60 |
Application of hydrogen-storage alloy electrode in electrochemical reduction of glucose Tang Y, Chen H, Jiang JZ, Tang Z, Huang BY, Roesky HW |
61 - 76 |
PEM fuel cell electrodes Litster S, McLean G |
77 - 84 |
Methane to syngas conversion - Part I. Equilibrium conditions and stability requirements of membrane materials Frade JR, Kharton VV, Yaremchenko A, Naumovich E |
85 - 94 |
Stoichiometric analysis of autothermal fuel processing Hagh BF |
95 - 105 |
Maximum current limitations of the PEM fuel cell with serpentine gas supply channels Zhukovsky K, Pozio A |
106 - 110 |
Autothermal reforming of methane over Ni/gamma-Al2O3 catalysts: the enhancement effect of small quantities of noble metals Dias JAC, Assaf JM |
111 - 118 |
Power generation using a mesoscale fuel cell integrated with a microscale fuel processor Holladay JD, Wainright JS, Jones EO, Gano SR |
119 - 128 |
The influence of noble-metal-containing cathodes on the electrochemical performance of anode-supported SOFCs Haanappel VAC, Rutenbeck D, Mai A, Uhlenbruck S, Sebold D, Wesemeyer H, Rowekamp B, Tropartz C, Tietz F |
129 - 135 |
Assessment of ceramic membrane reforming in a solid oxide fuel cell stack Atkinson A, Ramos T |
136 - 148 |
A finite element analysis modeling tool for solid oxide fuel cell development: coupled electrochemistry, thermal and flow analysis in MARC((R)) Khaleel MA, Lin Z, Singh P, Surdoval W, Collin D |
149 - 157 |
Computational model of a PEM fuel cell with serpentine gas flow channels Nguyen PT, Berning T, Djilali N |
158 - 162 |
Use of electropolymerized films of macrocyclic compounds in direct methanol fuel cell components Bettelheim A, Soifer L, Korin E |
163 - 171 |
Design and experimental tests of control strategies for active hybrid fuel cell/battery power sources Jiang ZH, Gao LJ, Blackwelder MJ, Dougal RA |
172 - 177 |
Recent progress in passive direct methanol fuel cells at KIST Kim DJ, Cho EA, Hong SA, Oh IH, Ha HY |
178 - 191 |
Laminar mixing, heat transfer and pressure drop in tree-like microchannel nets and their application for thermal management in polymer electrolyte fuel cells Senn SM, Poulikakos D |
192 - 201 |
Fuel economy of hydrogen fuel cell vehicles Ahluwalia RK, Wang X, Rousseau A, Kumar R |
202 - 207 |
An actively controlled fuel cell/battery hybrid to meet pulsed power demands Gao LJ, Jiang ZH, Dougal RA |
208 - 212 |
A cost comparison of fuel-cell and battery electric vehicles Eaves S, Eaves J |
213 - 220 |
Effect of Al-doping on lithium nickel oxides Amriou T, Sayede A, Khelifa B, Mathieu C, Aourag H |
221 - 226 |
In situ neutron radiography of lithium-ion batteries: the gas evolution on graphite electrodes during the charging Goers D, Holzapfel M, Scheifele W, Lehmann E, Vontobel P, Novak P |
227 - 232 |
Electrochemical and structural characteristics of metal oxide-coated lithium manganese oxide (spinel type) Part I. In the range of 2.5-4.2 V Lee SW, Kim KS, Moon HS, Lee JP, Kim HJ, Cho BW, Cho W, Park JW |
233 - 240 |
Electrochemical characteristics of metal oxide-coated lithium manganese oxide (spinel type) Part II. In the range of 3.0-4.4 V Lee SW, Kim KS, Lee KL, Moon HS, Kim HJ, Cho BW, Cho WI, Park JW |
241 - 246 |
Electrochemical characteristics and cycle performance of LiMn2O4/a-Si microbattery Lee KL, Jung JY, Lee SW, Moon HS, Park JW |
247 - 253 |
The dependence of natural graphite anode performance on electrode density Shim JP, Striebel KA |
254 - 259 |
Lithium insertion into manganese dioxide electrode in MnO2/Zn aqueous battery Part I. A preliminary study Manickam M, Singh P, Issa TB, Thurgate S, De Marco R |
260 - 265 |
LiMn2O4 electrode prepared by gold-titanium codeposition with improved cyclability Eftekhari A |
266 - 274 |
Rapid test and non-linear model characterisation of solid-state lithium-ion batteries Abu-Sharkh S, Doerffel D |
275 - 280 |
Si-SiC nanocomposite anodes synthesized using high-energy mechanical milling Kim IS, Blomgren GE, Kumta PN |
281 - 285 |
Optimization of the forming conditions of the solid-state interface in the Li-ion batteries Zhang SS, Xu K, Jow TR |
286 - 290 |
Electrocatalysis for dioxygen reduction by a mu-oxo decavanadium complex in alkaline medium and its application to a cathode catalyst in air batteries Dewi EL, Oyaizu K, Nishide H, Tsuchida E |
291 - 298 |
Recycling of batteries: a review of current processes and technologies Bernardes AM, Espinosa DCR, Tenorio JAS |
299 - 305 |
Studies on cerium (Ce4+/Ce3+)-vanadium(V2+/V3+) redox flow cell-cyclic voltammogram response of Ce4+/Ce3+ redox couple in H2SO4 solution Liu Y, Xia X, Liu H |
306 - 308 |
Current situation of scrap batteries in Turkey Aktas S, Sirkeci AA, Acma E |
309 - 314 |
Development of a novel composite aluminum anode Ferrando WA |