1 - 8 |
Synthesis, electrical and electrochemical properties of Ba0.5Sr0.5Zn0.2Fe0.8O3-delta perovskite oxide for IT-SOFC cathode Wei B, Lu Z, Huang XQ, Liu ML, Li N, Su WH |
9 - 15 |
Sulfonation of carbon-nanotube supported platinum catalysts for polymer electrolyte fuel cells Du CY, Zhao TS, Liang ZX |
16 - 22 |
Polyelectrolyte membranes based on hydrocarbon polymer containing fullerene Saga S, Matsumoto H, Saito K, Minagawa M, Tanioka A |
23 - 30 |
Surface regeneration of sulfur-poisoned Ni surfaces under SOFC operation conditions predicted by first-principles-based thermodynamic calculations Wang JH, Liu ML |
31 - 38 |
Influence of through-lamella grain growth on ionic conductivity of plasma-sprayed yttria-stabilized zirconia as an electrolyte in solid oxide fuel cells Xing YZ, Li CJ, Li CX, Yang GJ |
39 - 45 |
In situ confocal-Raman measurement of water and methanol concentration profiles in Nafion (R) membrane under cross-transport conditions Deabate S, Fatnassi R, Sistat P, Huguet P |
46 - 53 |
Preparation and characterization of coke resistant Ni/SiO2 catalyst for carbon dioxide reforming of methane Pan YX, Liu CJ, Shi P |
54 - 61 |
Evaluation of Laves-phase forming Fe-Cr alloy for SOFC interconnects in reducing atmosphere Horita T, Kishimoto H, Yamaji K, Xiong YP, Sakai N, Brito ME, Yokokawa H |
62 - 69 |
Fabrication and characterization of metal-supported solid oxide fuel cells Lee CB, Bae JM |
70 - 75 |
Citric acid functionalized carbon materials for fuel cell applications Poh CK, Lim SH, Pan H, Lin JY, Lee JY |
76 - 81 |
Physical and electrochemical characterization of Bi2O3-doped scandia stabilized zirconia Bai B, Sammes NM, Smirnova AL |
82 - 89 |
Electrical conductivity and performance of doped LaCrO3 perovskite oxides for solid oxide fuel cells Jiang SP, Liu L, Khuong POB, Ping WB, Li H, Pu H |
90 - 95 |
Dynamic evaluation of low-temperature metal-supported solid oxide fuel cell oriented to auxiliary power units Wang ZW, Berghaus JO, Yick S, Deces-Petit C, Qu W, Hui R, Maric R, Ghosh D |
96 - 101 |
Effect of milling methods on performance of Ni-Y2O3-stabilized ZrO2 anode for solid oxide fuel cell Cho HJ, Choi GM |
102 - 106 |
A high-performance Gd0.8Sr0.2CoO3-Ce0.9Gd0.1O1.95 composite cathode for intermediate temperature solid oxide fuel cell Huang SG, Peng CQ, Zong Z |
107 - 111 |
Synthesis and electrochemical properties of (Pr-Nd)(1-y)SryMnO3-delta and (Pr1-xNdx)(0.7)Sr0.3MnO3-delta as cathode materials for IT-SOFC Liu MF, Dong DH, Chen L, Gao JF, Liu XQ, Meng GY |
112 - 117 |
Kinetic characterization of a Pt-Ni/C catalyst with a phosphoric acid doped PBI membrane in a proton exchange membrane fuel cell Neyerlin KC, Singh A, Chu D |
118 - 121 |
Ionic resistance of the catalyst layer after the PEM fuel cell suffered freeze Hou JB, Song W, Yu HM, Fu Y, Hao LX, Shao ZG, Yi BL |
122 - 127 |
Protonic membrane for fuel cell for co-generation of power and ethylene Shi ZC, Luo JL, Wang SY, Sanger AR, Chuang KT |
128 - 131 |
Electrochemical durability investigation of single-walled and multi-walled carbon nanotubes under potentiostatic conditions Wang HJ, Yin GP, Shao YY, Wang ZB, Gao YZ |
132 - 137 |
Chemical compatibility and electrochemical property of intermediate-temperature SOFC cathodes under Cr poisoning condition Komatsua T, Chiba R, Arai H, Sato K |
138 - 154 |
Short-stack modeling of degradation in solid oxide fuel cells - Part I. Contact degradation Gazzarri JI, Kesler O |
155 - 166 |
Short stack modeling of degradation in solid oxide fuel cells - Part II. Sensitivity and interaction analysis Gazzarri JI, Kesler O |
167 - 174 |
Determination of interfacial adhesion strength between oxide scale and substrate for metallic SOFC interconnects Sun X, Liu WN, Stephens E, Khaleel MA |
175 - 182 |
Preparation and properties of carbon nanotube-reinforced vinyl ester/nanocomposite bipolar plates for polymer electrolyte membrane fuel cells Liao SH, Hung CH, Ma CCM, Yen CY, Lin YF, Weng CC |
183 - 190 |
A self-regulated passive fuel-feed system for passive direct methanol fuel cells Chan YH, Zhao TS, Chen R, Xu C |
191 - 199 |
A design tool for predicting the capillary transport characteristics of fuel cell diffusion media using an artificial neural network Kumbur EC, Sharp KV, Mench MM |
200 - 206 |
Modeling of gas transport through a tubular solid oxide fuel cell and the porous anode layer Izzo JR, Peracchio AA, Chiu WKS |
207 - 214 |
Development and characterization of a miniature PEM fuel cell stack with carbon bipolar plates Lin PC, Park BY, Madou MJ |
215 - 221 |
Effect of heat treatment and chemical composition on the corrosion behavior of Ni-Al intermetallics in molten (Li+K) carbonate Gonzalez-Rodriguez JG, Mejia E, Rosales I, Salinas-Bravo VM, Rosas G, MArtinez-Villafane A |
222 - 228 |
Simulation studies of the membrane exchange assembly of an all-liquid, proton exchange membrane fuel cell Byrd ED, Miley GH |
229 - 239 |
Synergistic integration of a gas turbine and solid oxide fuel cell for improved transient capability Mueller F, Gaynor R, Auld AE, Brouwer J, Jabbari F, Samuelsen GS |
240 - 246 |
Dynamic water transport and droplet emergence in PEMFC gas diffusion layers Bazylak A, Sinton D, Djilali N |
247 - 258 |
Effect of humidity of reactants on the cell performance of PEM fuel cells with parallel and interdigitated flow field designs Wang XD, Duan YY, Yan WM, Weng FB |
259 - 269 |
Adaptive maximum power point tracking control of fuel cell power plants Zhong ZD, Huo HB, Zhu XJ, Cao GY, Yuan R |
270 - 275 |
MWCNTs reinforced Nafion (R) membrane prepared by a novel solution-cast method for PEMFC Wang L, Xing DM, Zhang HM, Yu HM, Liu YH, Yi BL |
276 - 281 |
Carbon film-coated 304 stainless steel as PEMFC bipolar plate Chung CY, Chen SK, Chiu PJ, Chang MH, Hung TT, Ko TH |
282 - 286 |
Coated 316L stainless steel with CrxN film as bipolar plate for PEMFC prepared by pulsed bias arc ion plating Fu Y, Hou M, Lin GQ, Hou JB, Shao ZG, Yi BL |
287 - 292 |
Study of fuel efficiency in a direct borohydride fuel cell Jamard R, Latour A, Salomon J, Capron P, Martinent-Beaumont A |
293 - 298 |
Performance of a metallic gas diffusion layer for PEM fuel cells Zhang FY, Advani SG, Prasad AK |
299 - 305 |
Carbide-based fuel system for undersea vehicles Burke AA, Carreiro LG, Greene ES |
306 - 311 |
Pt and Ru dispersed on LiCoO2 for hydrogen generation from sodium borohydride solutions Liu ZL, Guo B, Chan SH, Tang EH, Hong L |
312 - 319 |
Performance of Na2O promoted alumina as CO2 chemisorbent in sorption-enhanced reaction process for simultaneous production of fuel-cell grade H-2 and compressed CO2 from synthesis gas Lee KB, Beaver MG, Caram HS, Sircar S |
320 - 324 |
Carbon nanofibers as hydrogen adsorbing materials for power sources Danilov MO, Melezhyk AV, Kolbasov GY |
325 - 331 |
Effect of equivalent and non-equivalent Al substitutions on the structure and electrochemical properties of LiNi0.5Mn0.5O2 Zhang B, Chen G, Xu P, Li CC |
332 - 339 |
Electrochemical properties of doped lithium titanate compounds and their performance in lithium rechargeable batteries Shenouda AY, Murali K |
340 - 346 |
Comb-like copolymer-based gel polymer electrolytes for lithium ion conductors Liang YH, Cheng-Chien WB, Chen CY |
347 - 352 |
Thermal stability of disordered carbon negative-electrode materials prepared from peanut shells Watanabe I, Doi T, Yamaki JI, Lin YY, Fey GTK |
353 - 358 |
Spherical silicon/graphite/carbon composites as anode material for lithium-ion batteries Lee JH, Kim WJ, Kim JY, Lim SH, Lee SM |
359 - 362 |
Expanding performance limit of lithium-ion batteries simply by mixing Al(OH)(3) powder with LiCoO2 Lee HC, Kim HJ, Kim DY, Choi SD |
363 - 368 |
Nanostructured manganese oxide electrodes for lithium-ion storage in aqueous lithium sulfate electrolyte Wu MS, Lee RH |
369 - 372 |
Novel carbon nanofiber-cobalt oxide composites for lithium storage with large capacity and high reversibility Yao WL, Wang JL, Yang J, Du GD |
373 - 380 |
An innovative computational algorithm for simulation of lead-acid batteries Esfahanian V, Torabi F, Mosahebi A |
381 - 386 |
A study of the Al content impact on the properties of MmNi(4.4-x)Co(0.6)Al(x) alloys as precursors for negative electrodes in NiMH batteries Bliznakov S, Lefterova E, Dimitrov N, Petrov K, Popov A |
387 - 392 |
Enhancement of photoelectrochemical response by aligned nanorods in ZnO thin films Ahn KS, Shet S, Deutsch T, Jiang CS, Yan YF, Al-Jassim M, Turner J |
393 - 395 |
ZnCl2- and NH4Cl-hydroponics gel electrolytes for zinc-carbon batteries Khalid NH, Ismail YMB, Mohamad AA |
396 - 402 |
Fabrication and electrochemical properties of carbon nanotube/polypyrrole composite film electrodes with controlled pore size Kim JY, Kim KH, Kim KB |
403 - 409 |
Preparation and enhanced capacitance of core-shell polypyrrole/polyaniline composite electrode for supercapacitors Mi HY, Zhang XG, Ye XG, Yang SD |
410 - 416 |
Ru oxide supercapacitors with high loadings and high power and energy densities Liu XR, Pickup PG |
417 - 425 |
Understanding RuO2 center dot xH(2)O/carbon nanofibre composites as supercapacitor electrodes Pico F, Ibanez J, Lillo-Rodenas MA, Linares-Solano A, Rojas RM, Amarilla JM, Rojo JM |