3047 - 3052 |
Preparation and electrochemical characterization of single-crystalline spherical LiNi1/3Co1/3Mn1/3O2 powders cathode material for Li-ion batteries Han XY, Meng QF, Sun TL, Sun JT |
3053 - 3059 |
Characterization of the Ni-ScSZ anode with a LSCM-CeO2 catalyst layer in thin film solid oxide fuel cell running on ethanol fuel Huang B, Zhu XJ, Hu WQ, Wang YY, Yu QC |
3060 - 3068 |
The effect of low concentrations of CO on H-2 adsorption and activation on Pt/C. Part 1: In the absence of humidity Zhang JZ, Liu ZM, Goodwin JG |
3069 - 3076 |
Novel silica/poly(2,6-dimethyl-1,4-phenylene oxide) hybrid anion-exchange membranes for alkaline fuel cells: Effect of silica content and the single cell performance Wu YH, Wu CM, Varcoe JR, Poynton SD, Xu TW, Fu YX |
3077 - 3083 |
Proton exchange membranes based on semi-interpenetrating polymer networks of fluorine-containing polyimide and Nafion (R) Pan HY, Pu HT, Wan DC, Jin M, Chang ZH |
3084 - 3090 |
Conceptual design of a novel ammonia-fuelled portable solid oxide fuel cell system Farhad S, Hamdullahpur F |
3091 - 3096 |
The effect of overpotential on performance degradation of the solid oxide fuel cell Ni/YSZ anode during exposure to syngas with phosphine contaminant Demircan O, Zhang W, Xu CC, Zondlo J, Finklea HO |
3097 - 3104 |
Cu1-xPdx/CeO2-impregnated cermet anodes for direct oxidation of methane in LaGaO3-electrolyte solid oxide fuel cells Bi ZH, Zhu JH |
3105 - 3110 |
Pt nanoparticles deposited on TiO2 based nanofibers: Electrochemical stability and oxygen reduction activity Bauer A, Lee K, Song CJ, Xie YS, Zhang JJ, Hui R |
3111 - 3118 |
Surface structure and electronic properties of Pt-Fe/C nanocatalysts and their relation with catalytic activity for oxygen reduction Malheiro AR, Perez J, Villullas HM |
3119 - 3123 |
Cu-YSZ cermet solid oxide fuel cell anode prepared by high-temperature sintering Tucker MC, Lau GY, Jacobson CP, Visco SJ, De Jonghe LC |
3124 - 3129 |
Influences of carbon support on the electrocatalysis of polypyrrole-modified cobalt hydroxide in the direct borohydride fuel cell Qin HY, Liu ZX, Lao SJ, Zhu JK, Li ZP |
3130 - 3134 |
Effect of zinc oxide on yttria doped ceria Gao L, Zhou M, Zheng YF, Gu HT, Chen H, Guo LC |
3135 - 3139 |
A study of the catalysis of cobalt hydroxide towards the oxygen reduction in alkaline media Wang Y, Zhang D, Liu HQ |
3140 - 3144 |
Regenerating Pt-3d-Pt model electrocatalysts through oxidation-reduction cycles monitored at atmospheric pressure Menning CA, Chen JG |
3145 - 3148 |
Photo-excitation enhanced high temperature conductivity and crystallization kinetics in ultra-thin La0.6Sr0.4Co0.8Fe0.2O3-delta films Cain T, Lai BK, Sankaranarayanan S, Ramanathan S |
3149 - 3154 |
Intermediate temperature fuel cell with a doped ceria-carbonate composite electrolyte Xia C, Li Y, Tian Y, Liu QH, Wang ZM, Jia LJ, Zhao YC, Li YD |
3155 - 3158 |
High performance proton-conducting solid oxide fuel cells with a stable Sm0.5Sr0.5Co3-delta-Ce0.8Sm0.2O2-delta composite cathode Sun WP, Yan LT, Lin B, Zhang SQ, Liu W |
3159 - 3165 |
Effects of crystallization on the high-temperature mechanical properties of a glass sealant for solid oxide fuel cell Chang HT, Lin CK, Liu CK |
3166 - 3175 |
Experimental verification of a membrane humidifier model based on the effectiveness method Kadylak D, Merida W |
3176 - 3185 |
Dynamic modeling and evaluation of solid oxide fuel cell - combined heat and power system operating strategies Nanaeda K, Mueller F, Brouwer J, Samuelsen S |
3186 - 3200 |
Computational model to predict thermal dynamics of planar solid oxide fuel cell stack during start-up process Ki J, Kim D |
3201 - 3206 |
Passive water management at the cathode of a planar air-breathing proton exchange membrane fuel cell Fabian T, O'Hayre R, Litster S, Prinz FB, Santiago JG |
3207 - 3214 |
Flow uniformity optimization for large size planar solid oxide fuel cells with U-type parallel channel designs Bi WX, Li JY, Lin ZJ |
3215 - 3223 |
A novel full-field experimental method to measure the local compressibility of gas diffusion media Lai YH, Li YQ, Rock JA |
3224 - 3230 |
A novel design for a flow field configuration, of a direct methanol fuel cell Hsieh SS, Wu HC, Her BS |
3231 - 3239 |
Gas flow rate distributions in parallel minichannels for polymer electrolyte membrane fuel cells: Experiments and theoretical analysis Zhang LF, Bi HTT, Wilkinson DP, Stumper J, Wang HJ |
3240 - 3249 |
Reduced-dimensional models for straight-channel proton exchange membrane fuel cells Kim GS, Sui PC, Shah AA, Djilali N |
3250 - 3255 |
Two-phase flow measurement system for polymer electrolyte fuel cells Niroumand AM, Saif M |
3256 - 3260 |
Evaluation of electrodeposited Fe-Ni alloy on ferritic stainless steel solid oxide fuel cell interconnect Geng SJ, Li YD, Ma ZH, Wang LL, Li LN, Wang FH |
3261 - 3265 |
Electrical conductivity and thermal expansion of neodymium-ytterbium zirconate ceramics Liu ZG, Ouyang JH, Zhou Y, Xia XL |
3266 - 3274 |
Enhanced hydrogen sorption kinetics of Mg50Ni-LiBH4 composite by CeCl3 addition Gennari FC, Puszkiel JA |
3275 - 3283 |
Steam reforming of liquid hydrocarbons over a nickel-alumina spinel catalyst Fauteux-Lefebvre C, Abatzoglou N, Blanchard J, Gitzhofer F |
3284 - 3292 |
A direct measurement of the heat evolved during the sodium and potassium borohydride catalytic hydrolysis Damjanovic L, Bennici S, Auroux A |
3293 - 3299 |
Structural and electrochemical properties of the doped spinels Li1.05M0.02Mn1.98O3.98N0.02 (M = Ga3+, Al3+, or Co3+; N = S2- or F-) for use as cathode material in lithium batteries Amaral FA, Bocchi N, Brocenschi RF, Biaggio SR, Rocha RC |
3300 - 3308 |
MnO powder as anode active materials for lithium ion batteries Zhong KF, Xia X, Zhang B, Li H, Wang ZX, Chen LQ |
3309 - 3315 |
Electrochemical recovery of cobalt and copper from spent Li-ion batteries as multilayer deposits Freitas MBJG, Celante VG, Pietre MK |
3316 - 3322 |
Influence of alkali ion doping on the electrochemical performances of tin-based composite materials Aboulaich A, Conte DE, Olivier-Fourcade J, Jordy C, Willmann P, Jumas JC |
3323 - 3327 |
Lithium silicon sulfide as an anode material in all-solid-state lithium batteries Hang BT, Ohnishi T, Osada M, Xu XX, Takada K, Sasaki T |
3328 - 3332 |
Synthesis of LixMnO2 by chemical lithiation in an aqueous media Jung WI, Nagao M, Pitteloud C, Yamada A, Kanno R |
3333 - 3337 |
Free standing aluminum nanostructures as anodes for Li-ion rechargeable batteries Au M, McWhorter S, Ajo H, Adams T, Zhao YP, Gibbs J |
3338 - 3343 |
Online management of lithium-ion battery based on time-triggered controller area network for fuel-cell hybrid vehicle applications Li XJ, Li JQ, Xu LF, Ouyang MG, Han XB, Lu LG, Lin CT |