1 - 10 |
Which type of fuel cell is more competitive for portable application: Direct methanol fuel cells or direct borohydride fuel cells? Wee JH |
11 - 18 |
Effect of dispersion methods of an unsupported Pt-Ru black anode catalyst on the power performance of a direct methanol fuel cell Lim C, Allen RG, Scott K |
19 - 26 |
Effect of sulfur and nickel doping on morphology and electrochemical performance of LiNi0.5Mn1.5O4-xSx spinel material in 3-V region Sun YK, Oh SW, Yoon CS, Bang HJ, Prakash J |
27 - 33 |
Effect of operation parameters on performance of micro direct methanol fuel cell fabricated on printed circuit board Lim SW, Kim SW, Kim HJ, Ahn JE, Han HS, Shul YG |
34 - 39 |
Behavior of lanthanum-doped ceria and Sr-, Mg-doped LaGaO3 electrolytes in an anode-supported solid oxide fuel cell with a La0.6Sr0.4CoO3 cathode Bi ZH, Dong YL, Cheng MJ, Yi BL |
40 - 46 |
Proton conduction in ceria-doped Ba2In2O5 nanocrystalline ceramic at low temperature Hui R, Maric R, Deces-Petit C, Styles E, Qu W, Zhang XG, Roller J, Yick S, Ghosh D, Sakata K, Kenji M |
47 - 53 |
Multi-walled carbon nanotubes based Pt electrodes prepared with in situ ion exchange method for oxygen reduction Shao YY, Yin GP, Wang HH, Gao YZ, Shi PF |
54 - 60 |
PVDF-g-PSSA and Al2O3 composite proton exchange membranes Shen Y, Qiu XP, Shen J, Xi JY, Zhu WT |
61 - 67 |
Pt/SiO2 catalyst as an addition to Nafion/PTFE self-humidifying composite membrane Wang L, Xing DM, Liu YH, Cai YH, Shao ZG, Zhai YF, Zhong HX, Yi BL, Zhang HM |
68 - 73 |
The preparation of high activity DMFC Pt/C electrocatalysts using a pre-precipitation method Liu CP, Xue XZ, Lu TH, Xing W |
74 - 78 |
Study on metallic bipolar plate for proton exchange membrane fuel cell Matsuura T, Kato M, Hori M |
79 - 86 |
Effect of metal ion concentration on synthesis and properties of La0.84Sr0.16MnO3 cathode material Kumar A, Devi PS, Maiti HS |
87 - 94 |
Thermodynamic evaluation of methanol steam reforming for hydrogen production Faungnawakij K, Kikuchi R, Eguchi K |
95 - 98 |
A high-performance ammonia-fueled solid oxide fuel cell Ma QL, Peng RR, Lin YJ, Gao HF, Meng GY |
99 - 105 |
Performance of membrane electrode assemblies based on proton exchange membranes prepared by pre-irradiation induced grafting Li JY, Matsuura A, Kakigi T, Miura T, Oshima A, Washio M |
106 - 114 |
SECM characterization of Pt-Ru-WC and Pt-Ru-Co ternary thin film combinatorial libraries as anode electrocatalysts for PEMFC Lu GJ, Cooper JS, McGinn PJ |
115 - 122 |
Performance of a novel La(Sr)Fe(Co)O-3-Ag SOFC cathode Simner SR, Anderson MD, Coleman JE, Stevenson JW |
123 - 128 |
High-performance low-temperature solid oxide fuel cell with novel BSCF cathode Liu QL, Khor KA, Chan SH |
129 - 132 |
Low temperature thermochemical water splitting using tungsten phosphate glass/Pd laminated membrane Tawarayama H, Utsuno F, Inoue H, Fujitsu S, Kawazoe H |
133 - 137 |
Electrocatalytic oxidation of methanol by platinum nanoparticles on nickel-chromium alloys Wang ZH, Zhang LL, Qiu KY |
138 - 142 |
Electrochemical impedance investigation of flooding in micro-flow channels for proton exchange membrane fuel cells Cha SW, O'Hayre R, Park YI, Prinz FB |
143 - 159 |
Water and thermal management in a single PEM fuel cell with non-uniform stack temperature Zong Y, Zhou B, Sobiesiak A |
160 - 167 |
Preparation of gas diffusion electrodes using PEG/SiO2 hybrid materials and the effect of their composition on microstructure of the catalyst layer and on fuel cell performance Thangamuthu R, Lin CW |
168 - 182 |
The role of ambient conditions on the performance of a planar, air-breathing hydrogen PEM fuel cell Fabian T, Posner JD, O'Hayre R, Cha SW, Eaton JK, Prinz FB, Santiago JG |
183 - 190 |
Modeling techniques applied to the study of gas diffusion electrodes and proton exchange membrane biochemical fuel cells Sousa R, Colmati F, Gonzalez ER |
191 - 202 |
Water management in proton exchange membrane fuel cells using integrated electroosmotic pumping Buie CR, Posner JD, Fabian T, Suk-Won CA, Kim D, Prinz FB, Eaton JK, Santiago JG |
203 - 213 |
Simulation of the water and heat management in proton exchange membrane fuel cells Matamoros L, Bruggemann D |
214 - 224 |
On effective transport coefficients in PEM fuel cell electrodes: Anisotropy of the porous transport layers Pharoah JG, Karan K, Sun W |
225 - 231 |
Mass transfer in graded microstructure solid oxide fuel cell electrodes Greene ES, Chiu WKS, Medeiros MG |
232 - 239 |
Impedance studies and modeling of direct methanol fuel cell anode with interface and porous structure perspectives Hsu NY, Yen SC, Jeng KT, Chien CC |
240 - 249 |
Effect of breathing-hole size on the electrochemical species in a free-breathing cathode of a DMFC Hwang JJ, Wu SD, Lai LK, Chen CK, Lai DY |
250 - 255 |
Microstructure and electrochemical properties of cathode materials for SOFCs prepared via pulsed laser deposition Koep E, Jin CM, Haluska M, Das R, Narayan R, Sandhage K, Snyder R, Liu ML |
256 - 263 |
Analysis of performance losses of direct ethanol fuel cells with the aid of a reference electrode Li GC, Pickup PG |
264 - 274 |
Characterisation of proton exchange membrane fuel cell (PEMFC) failures via electrochemical impedance spectroscopy Merida W, Harrington DA, Le Canut JM, McLean G |
275 - 281 |
CF4 plasma treatment for preparing gas diffusion layers in membrane electrode assemblies Pai YH, Ke JH, Huang HF, Lee CM, Jyh-Myng Z, Shieu FS |
282 - 289 |
Advanced air-breathing direct methanol fuel cells for portable applications Pan YH |
290 - 293 |
A hydrogen refill for cellular phone Prosini PP, Gislon P |
294 - 300 |
Analysis of coupled electron and mass transport in the gas diffusion layer of a PEM fuel cell Sui PC, Djilali N |
301 - 307 |
NiO-YSZ cermets supported low temperature solid oxide fuel cells Zhang XG, Robertson M, Deces-Petit C, Xie YS, Hui R, Yick S, Styles E, Roller J, Kesler O, Maric R, Ghosh D |
308 - 322 |
Experimental and modeling study of solid oxide fuel cell operating with syngas fuel Suwanwarangkul R, Croiset E, Entchev E, Charojrochkul S, Pritzker MD, Fowler MW, Douglas PL, Chewathanakup S, Mahaudom H |
323 - 332 |
Effects of the gas diffusion-layer parameters on cell performance of PEM fuel cells Jang JH, Yan WM, Shih CC |
333 - 345 |
Liquid droplet behavior and instability in a polymer electrolyte fuel cell flow channel Kumbur EC, Sharp KV, Mench MM |
346 - 355 |
A thermally coupled metal hydride hydrogen storage and fuel cell system MacDonald BD, Rowe AM |
356 - 370 |
Dynamic modeling of a methanol reformer - PEMFC stack system for analysis and design Stamps AT, Gatzke EP |
371 - 379 |
Numerical analysis of gas cross-over through the membrane in a proton exchange membrane fuel cell Seddiq M, Khaleghi H, Mirzaei M |
380 - 391 |
Effects of transport scale on heat/mass transfer and performance optimization for solid oxide fuel cells Ji Y, Yuan K, Chung JN, Chen YC |
392 - 403 |
Simulation of SOFC stack and repeat elements including interconnect degradation and anode reoxidation risk Larrain D, Van herle J, Favrat D |
404 - 412 |
On the relative influence of convection in serpentine flow fields of PEM fuel cells Feser JP, Prasad AK, Advani SG |
413 - 419 |
Anode barrier layers for tubular solid-oxide fuel cells with methane fuel streams Zhu HY, Colclasure AM, Kee RJ, Lin YB, Barnett SA |
420 - 431 |
A thermodynamic analysis of the reformer sponge iron cycle Fraser SD, Monsberger M, Hacker V |
432 - 436 |
Development of a miniaturized polymer electrolyte membrane fuel cell with silicon separators Kim JY, Kwon OJ, Hwang SM, Kang MS, Kim JJ |
437 - 443 |
Characterization of electrolyte-electrode interlayers in thin film solid oxide fuel cells Reitz TL, Xiao HM |
444 - 453 |
Effects of the electrical resistances of the GDL in a PEM fuel cell Zhou TH, Liu HT |
454 - 459 |
Cost-benefit analysis of commercial bipolar plates for PEMFC's Jayakumar K, Pandiyan S, Rajalakshmi N, Dhathathreyan KS |
460 - 465 |
High-rate electrochemical partial oxidation of methane in solid oxide fuel cells Zhan ZL, Lin YB, Pillai M, Kim I, Barnett SA |
466 - 469 |
A simplified method for solving anisotropic transport phenomena in PEM fuel cells Meng H |
470 - 473 |
Room temperature preparation of carbon supported Pt-Ru catalysts Chen Y, Tang YW, Liu CP, Xing W, Lu TH |
474 - 483 |
Performance of alkaline fuel cells: A possible future energy system? Lin BYS, Kirk DW, Thorpe SJ |
484 - 491 |
Control design of an atmospheric solid oxide fuel cell/gas turbine hybrid system: Variable versus fixed speed gas turbine operation Roberts R, Brouwer J, Jabbari F, Junker T, Ghezel-Ayagh H |
492 - 502 |
Steady state and dynamic performance of proton exchange membrane fuel cells (PEMFCs) under various operating conditions and load changes Yan QG, Toghiani H, Causey H |
503 - 512 |
Dynamic behaviour of methane heat exchange reformer for residential fuel cell power generation system Patel KS, Sunol AK |
513 - 523 |
Assessment of coal and graphite electrolysis on carbon fiber electrodes Sathe N, Botte GG |
524 - 530 |
Electrochemical storage of hydrogen in nanotubular TiO2 arrays Pillai P, Raja KS, Misra M |
531 - 534 |
Preparation of Ni/Pt catalysts supported on spinel (MgAl2O4) for methane reforming Foletto EL, Alves RW, Jahn SL |
535 - 540 |
Inhibited crystallization and its effect on conductivity in a nano-sized Fe oxide composite PEO solid electrolyte Reddy MJ, Chu PP, Kumar JS, Rao UVS |
541 - 544 |
Electrochemical properties of NiO-Ni nanocomposite as anode material for lithium ion batteries Huang XH, Tu JP, Zhang B, Zhang CQ, Li Y, Yuan YF, Wu HM |
545 - 549 |
Polytriphenylamine used as an electroactive separator material for overcharge protection of rechargeable lithium battery Feng JK, Ai XP, Cao YL, Yang HX |
550 - 559 |
Poly-ether modified siloxanes as electrolyte additives for rechargeable lithium cells Inose T, Tada S, Morimoto H, Tobishima SI |
560 - 564 |
Advanced, high-performance composite polymer electrolytes for lithium batteries Croce F, Sacchetti S, Scrosati B |
565 - 572 |
Electrochemical intercalation of lithium into polypyrrole/silver vanadium oxide composite used for lithium primary batteries Lee JW, Popov BN |
573 - 579 |
Thermal stability of LiPF6 salt and Li-ion battery electrolytes containing LiPF6 Yang H, Zhuang GV, Ross PN |
580 - 586 |
Triple hybrid materials: A novel concept within the field of organic-inorganic hybrids Cuentas-Gallegos AK, Gomez-Romero P |
587 - 593 |
Tin-graphite materials prepared by reduction of SnCl4 in organic medium: Synthesis, characterization and electrochemical lithiation Balan L, Schneider R, Willmann P, Billaud D |
594 - 600 |
Cycle-life testing of large-capacity lithium-ion cells in simulated satellite operation Wang XM, Sone Y, Naito H, Yamada C, Segami G, Kibe K |
601 - 605 |
Effects of synthesis conditions on the structural and electrochemical properties of layered Li[Ni1/3Co1/3Mn1/3]O-2 cathode material via the hydroxide co-precipitation method LIB SCITECH Luo XF, Wang XY, Liao L, Wang XM, Gamboa S, Sebastian PJ |
606 - 611 |
Effect of titanium substitution in layered LiNiO2 cathode material prepared by molten-salt synthesis Ha HW, Jeong KH, Kim K |
612 - 616 |
Effect of poly(acrylic acid) on adhesion strength and electrochemical performance of natural graphite negative electrode for lithium-ion batteries Lee JH, Paik U, Hackley VA, Choi YM |
617 - 622 |
Study of styrene butadiene rubber and sodium methyl cellulose as binder for negative electrodes in lithium-ion batteries Buqa H, Holzapfel M, Krumeich F, Veit C, Novak P |
623 - 627 |
Enhanced electrochemical properties of LiNi1/3Co1/3Mn1/3O2 cathode material by coating with LiAlO2 nanoparticles Kim HS, Kim Y, Kim SI, Martin SW |
628 - 639 |
Solid-state diffusion limitations on pulse operation of a lithium ion cell for hybrid electric vehicles Smith K, Wang CY |
640 - 647 |
Overcharge studies of carbon fiber composite-based lithium-ion cells Hossain S, Kim YK, Saleh Y, Loutfy R |
648 - 657 |
Diagnostic examination of thermally abused high-power lithium-ion cells Abraham DP, Roth EP, Kostecki R, McCarthy K, MacLaren S, Doughty DH |
658 - 665 |
Influence of H2SO4 concentration on lead-acid battery performance H-type and P-type batteries Pavlov D, Naidenov V, Ruevski S |
666 - 675 |
Corrosion management of PbCaSn alloys in lead-acid batteries: Effect of composition, metallographic state and voltage conditions Rocca E, Bourguignon G, Steinmetz J |
676 - 684 |
Thermoelectric power of Gd-doped CeO2 (Gd0.1Ce0.90(2-delta) (GDC10)): Measurements on porous samples Lim HT, Virkar AV |
685 - 691 |
A rechargeable Zn-poly(aniline-co-m-aminophenol) battery Zhang J, Shan D, Mu SL |
692 - 701 |
The influence of hydrogen intercalation on inner pressure of Ni/MH battery during fast charge Shi JZ, Wu F, Hu DZ, Chen S, Mao LC, Wang GQ |
702 - 706 |
Polymeric rechargeable solid-state proton battery Pratap R, Singh B, Chandra S |
707 - 722 |
Dynamic modeling, design and simulation of a wind/fuel clell/ultra-capacitor-based hybrid power generation system Onar OC, Uzurloglu A, Alm MS |
723 - 729 |
Electrochemical characteristics and impedance spectroscopy studies of nano-cobalt silicate hydroxide for supercapacitor Zhang GQ, Zhao YQ, Tao F, Li HL |
730 - 736 |
Nanostructured mesoporous carbon as electrodes for supercapacitors Prabaharan SRS, Vimala R, Zainal Z |
737 - 742 |
Manganese oxide film electrodes prepared by electrostatic spray deposition for electrochemical capacitors from the KMnO4 solution Dai Y, Wang K, Zhao JC, Xie JY |