1 - 9 |
Characteristics of droplet and film water motion in the flow channels of polymer electrolyte membrane fuel cells Zhan ZG, Xiao JS, Pan M, Yuan RZ |
10 - 17 |
Effect of solvents on the characteristics of Nafion (R)/PTFE composite membranes for fuel cell applications Ramya K, Velayutham G, Subramaniam CK, Rajalakshmi N, Dhathathreyan KS |
18 - 26 |
Mass/electron co-transports in an air-breathing cathode of a PEM fuel cell Hwang JJ, Wu SD, Pen RG, Chen PY, Chao CH |
27 - 36 |
Improving the performance of high-temperature PEM fuel cells based on PBI electrolyte Seland F, Berning T, Borresen B, Tunold R |
37 - 43 |
Investigation of ethanol electrooxidation on a Pt-Ru-Ni/C catalyst for a direct ethanol fuel cell Wang ZB, Yin GP, Zhang J, Sun YC, Shi PF |
44 - 49 |
Electrocatalytic oxidation of methanol on Pt modified single-walled carbon nanotubes Guo DJ, Li HL |
50 - 56 |
An analytical solution for transport of oxygen in cathode gas diffusion layer of PEMFC Tsai CR, Chen FL, Ruo AC, Chang MH, Chu HS, Soong CY, Yan WM, Cheng CH |
57 - 64 |
Ba0.5Sr0.5Co0.8Fe0.2O3-delta as a cathode for IT SOFCs with a GDC interlayer Duan ZS, Yang M, Yan A, Hou ZF, Dong YL, Chong Y, Cheng MJ, Yang WS |
65 - 72 |
Enhanced electrocatalytic performance for methanol oxidation of a novel Pt-dispersed poly (3,4-ethylenedioxythiophene)-poly (styrene sulfonic acid) electrode Kuo CW, Huang LM, Wen TC, Gopalan A |
73 - 77 |
Fabrication and characterization of micro tubular SOFCs for operation in the intermediate temperature Suzuki T, Yamaguchi T, Fujishiro Y, Awano M |
78 - 89 |
Cyclic voltammetric analysis of C-1-C-4 alcohol electrooxidations with Pt/C and Pt-Ru/C microporous electrodes Lee CG, Umeda M, Uchida I |
90 - 96 |
Effects of platinum loading on performance of proton-exchange membrane fuel cells using surface-modified Nafion (R) membranes Prasanna M, Cho EA, Kim HJ, Lim TH, Oh IH, Hong SA |
97 - 104 |
Performance of direct methanol fuel cell using carbon nanotube-supported Pt-Ru anode catalyst with controlled composition Jeng KT, Chien CC, Hsu NY, Yen SC, Chiou SD, Lin SH, Huang WM |
105 - 115 |
Control of methanol transport and separation in a DMFC with a porous support Nakagawa N, Abdelkareem MA, Sekimoto K |
116 - 122 |
Experimental study on the performance of PEM fuel cells with interdigitated flow channels Yan WM, Mei SC, Soong CY, Liu ZS, Song DT |
123 - 129 |
Biological fuel cell and an application as a reserve power source Walker AL, Walker CW |
130 - 138 |
A fundamental study of chromium deposition on solid oxide fuel cell cathode materials Tucker MC, Kurokawa H, Jacobson CP, De Jonghe LC, Visco SJ |
139 - 147 |
Preparation and characterization of sulfonated PEEK-WC membranes for fuel cell applications - A comparison between polymeric and composite membranes Regina A, Fontananova E, Drioli E, Casciola M, Sganappa M, Trotta F |
148 - 154 |
Low-temperature synthesis of nanocrystalline NiO-YSZ powders by succinic acid-assisted combustion Shih FY, Fung KZ, Lin HC, Chen GJ |
155 - 160 |
One-step preparation and characterization of PtRu (1 : 1)/C electrocatalysts by polyol method for polymer electrolyte fuel cells Lee D, Hwang S, Lee I |
161 - 164 |
Effect of additives on the electrochemical behaviour of zinc anodes for zinc/air fuel cells Lee CW, Sathiyanarayanan K, Eom SW, Kim HS, Yun MS |
165 - 174 |
Poly(arylene disulfide)/graphite nanosheets composites as bipolar plates for polymer electrolyte membrane fuel cells Xiao M, Lu Y, Wang SJ, Zhao YF, Meng YZ |
175 - 180 |
Developments of new proton conducting membranes based on different polybenzimidazole structures for fuel cells applications Carollo A, Quartarone E, Tomasi C, Mustarelli P, Belotti F, Magistris A, Maestroni F, Parachini M, Garlaschelli L, Righetti PP |
181 - 186 |
Water and methanol transport in Nafion membranes with different cationic forms 1. Alkali monovalent cations Godino MP, Barragan VM, Villaluenga JPG, Ruiz-Bauza C, Seoane B |
187 - 193 |
Ultrasonically treated multi-walled carbon nanotubes (MWCNTs) as PtRu catalyst supports for methanol electrooxidation Yang CW, Hu XG, Wang DL, Dai CS, Zhang L, Jin HB, Agathopoulos S |
194 - 201 |
PEM FC with improved water management Kraytsberg A, Ein-Eli Y |
202 - 206 |
Fabrication and characterization of thin film electrolytes deposited by RF magnetron sputtering for low temperature solid oxide fuel cells Yoo Y |
207 - 214 |
Preparation of NiO-YSZ/YSZ bi-layers for solid oxide fuel cells by electrophoretic deposition Besra L, Zha SW, Liu ML |
215 - 223 |
Three dimensional modeling of high temperature PEM fuel cells Cheddie DF, Munroe NDH |
224 - 231 |
Parametric study of a novel cathode catalyst layer in proton exchange membrane fuel cells Du CY, Yin GP, Cheng XQ, Shi PF |
232 - 245 |
Effects of parameter uncertainty on the performance variability of proton exchange membrane (PEM) fuel cells Mawardi A, Pitchumani R |
246 - 251 |
MnO2-Pt/C composite electrodes for preventing voltage reversal effects with polymer electrolyte membrane fuel cells Wei ZD, Ji MB, Hong Y, Sun CX, Chan SH, Shen PK |
252 - 257 |
Performance of PEMFC stack using expanded graphite bipolar plates Yan XQ, Hou M, Zhang HF, Jing FN, Ming PW, Yi BL |
258 - 267 |
Development of a control-oriented model for the solid oxide fuel cell Zhang XW, Li J, Li GJ, Feng ZP |
268 - 276 |
Effects of two-phase transport in the cathode gas diffusion layer on the performance of a PEMFC Chang MH, Chen FL, Teng HS |
277 - 283 |
A fractal permeability model for the gas diffusion layer of PEM fuel cells Shi Y, Xiao JS, Pan M, Yuan RZ |
284 - 292 |
Experimental studies on optimal operating conditions for different flow field designs of PEM fuel cells Yan WM, Yang CH, Soong CY, Chen FL, Mei SC |
293 - 298 |
Modeling a PEMFC by a support vector machine Zhong ZD, Zhu XJ, Cao GY |
299 - 304 |
Analytical correlations for intermediate temperature PEM fuel cells Cheddie D, Munroe N |
305 - 315 |
Performance of intermediate temperature (600-800 degrees C) solid oxide fuel cell based on Sr and Mg doped lanthanum-gallate electrolyte Gong WQ, Gopalan S, Pal UB |
316 - 325 |
Power and temperature control of fluctuating biomass gas fueled solid oxide fuel cell and micro gas turbine hybrid system Kaneko T, Brouwer J, Samuelsen GS |
326 - 333 |
The influence of catalyst layer morphology on the electrochemical performance of DMFC anode Wang ZL, Liu Y, Linkov VM |
334 - 339 |
Development of materials for mini DMFC working at room temperature for portable applications Coutanceau C, Koffi RK, Leger JM, Marestin K, Mercier R, Nayoze C, Capron P |
340 - 352 |
Numerical investigation of transport component design effect on a proton exchange membrane fuel cell Chiang MS, Chu HS |
353 - 358 |
Sulfonated poly(ether sulfone) for universal polymer electrolyte fuel cell operations Kim HJ, Krishnan NN, Lee SY, Hwang SY, Kim D, Jeong KJ, Lee JK, Cho E, Lee J, Han J, Ha HY, Lim TH |
359 - 373 |
Parameter sensitivity examination and discussion of PEM fuel cell simulation model validation Part I. Current status of modeling research and model development Tao WQ, Min CH, Liu XL, He YL, Yin BH, Jiang W |
374 - 385 |
Parameter sensitivity examination and discussion of PEM fuel cell simulation model validation Part II: Results of sensitivity analysis and validation of the model Min CH, He Y, Liu XL, Yin BH, Jiang W, Tao WQ |
386 - 397 |
Polymer electrolyte membrane resistance model Renganathan S, Guo QZ, Sethuraman VA, Weidner JW, White RE |
398 - 406 |
The impact of channel path length on PEMFC flow-field design Shimpalee S, Greenway S, Van Zee JW |
407 - 412 |
Influence of operation conditions on direct borohydride fuel cell performance Cheng H, Scott K |
413 - 421 |
A three-dimensional mathematical model for liquid-fed direct methanol fuel cells Ge J, Liu H |
422 - 425 |
Open- and closed-circuit study of an intermediate temperature SOFC directly fueled with simulated biogas mixtures Yentekakis LV |
426 - 430 |
Measuring moisture sorption and diffusion kinetics on proton exchange membranes using a gravimetric vapor sorption apparatus Burnett DJ, Garcia AR, Thielmann F |
431 - 435 |
Voltage loss in bipolar plates in a fuel cell stack Kulikovsky AA |
436 - 438 |
Development of yttria-stabilized zirconia thin films via slurry spin coating for intermediate-to-low temperature solid oxide fuel cells Chen KF, Lu Z, Ai N, Huang XQ, Zhang YH, Xin XS, Zhu RB, Su WH |
440 - 445 |
Determination of DMFC deterioration during long-term operation Kim H, Shin SJ, Park YG, Song J, Kim HT |
446 - 453 |
Estimating the early household market for light-duty hydrogen-fuel-cell vehicles and other "Mobile Energy" innovations in California: A constraints analysis Williams BD, Kurani KS |
454 - 461 |
Intra-fuel cell stack measurements of transient concentration distributions Partridge WP, Toops TJ, Green JB, Armstrong TR |
462 - 473 |
Design performance analysis of pressurized solid oxide fuel cell/gas turbine hybrid systems considering temperature constraints Yang WJ, Park SK, Kim TS, Kim JH, Sohn JL, Ro ST |
474 - 484 |
Techno-economic analysis of fuel cell auxiliary power units as alternative to idling Jain S, Chen HY, Schwank J |
485 - 489 |
Surface modification and development of titanium bipolar plates for PEM fuel cells Wang SH, Peng J, Lui WB |
490 - 499 |
Reforming catalysts for hydrogen generation in fuel cell applications Cheekatamarla PK, Finnerty CM |
500 - 504 |
Diesel fuel processing for fuel cells - DESIRE Krummrich S, Tuinstra B, Kraaij G, Roes J, Olgun H |
505 - 509 |
Design of an integrated fuel processor for residential PEMFCs applications Seo YT, Seo DJ, Jeong JH, Yoon WL |
510 - 513 |
Design and development of a diesel and JP-8 logistic fuel processor Roychoudhury S, Lyubovsky M, Walsh D, Chu D, Kallio E |
514 - 515 |
A comparison of sodium borohydride as a fuel for proton exchange membrane fuel cells and for direct borohydride fuel cells (vol 155, pg 329, 2006) Wee JH |
516 - 522 |
Hydrothermal synthesis of high surface LiFePO4 powders as cathode for Li-ion cells Meligrana G, Gerbaldi C, Tuel A, Bodoardo S, Penazzi N |
523 - 528 |
Improved electrode characteristics of olivine-LiCoPO4 processed by high energy milling Rabanal ME, Gutierrez MC, Garcia-Alvarado F, Gonzalo EC, Arroyo-de Dompablo ME |
529 - 535 |
Combustion synthesis of nanocrystalline LiNiYCo1-2YMn1+YO4 spinels for 5 V cathode materials - Characterization and electrochemical properties Rojas RM, Amarilla JM, Pascual L, Rojo JM, Kovacheva D, Petrov K |
536 - 541 |
A novel composite negative electrode consist of multiphase Sn compounds and mesophase graphite powders for lithium ion batteries Fang T, Hsiao LY, Duh JG, Sheen SR |
542 - 547 |
Shape-controlled synthesis and lithium-storage study of metal-organic frameworks Zn4O(1,3,5-benzenetribenzoate)(2) Li XX, Cheng FY, Zhang SN, Chen J |
548 - 557 |
Passive film formation on a graphite electrode: Effect of siloxane structures Nakahara H, Yoon SY, Nutt S |
558 - 562 |
Synthesis and characterization of spherical morphology [Ni0.4Co0.2Mn0.4](3)O-4 materials for lithium secondary batteries Oh SW, Park SH, Amine K, Sun YK |
563 - 569 |
Microwave synthesis and characterization of acetate-stabilized Pt nanoparticles supported on carbon for methanol electro-oxidation Zhao J, Wang P, Chen WX, Liu R, Li X, Nie QL |
570 - 576 |
Synthesis and effect of forming Fe2P phase on the physics and electrochemical properties of LiFePO4/C materials Xu YB, Lu YJ, Yan L, Yang ZY, Yang RD |
577 - 584 |
Low operational temperature Li-CFx batteries using cathodes containing sub-fluorinated graphitic materials Whitacre J, Yazami R, Hamwi A, Smart MC, Bennett W, Prakash GKS, Miller T, Bugga R |
585 - 591 |
Chemical reduction method for industrial application of undoped polypyrrole electrodes in lithium-ion batteries Bengoechea M, Boyano I, Miguel O, Cantero I, Ochoteco E, Pomposo J, Grande H |
592 - 601 |
Amorphous vanadium oxide films synthesised by ALCVD for lithium rechargeable batteries Le Van K, Groult H, Mantoux A, Perrigaud L, Lantelme F, Lindstrom R, Badour-Hadjean R, Zanna S, Lincot D |
602 - 608 |
Cycle-life testing of 100-Ah class lithium-ion battery in a simulated geosynchronous-Earth-orbit satellite operation Wang XM, Sone Y, Naito H, Yamada C, Segami G, Kibe K |
609 - 620 |
Preparation and properties of new cross-linked polyurethane acrylate electrolytes for lithium batteries Santhosh P, Vasudevan T, Gopalan A, Lee KP |
621 - 626 |
Additive-containing ionic liquid electrolytes for secondary lithium battery Xu JQ, Yang J, NuLi Y, Wang JL, Zhang ZS |
627 - 632 |
Electrochemical characteristics of layered LiNi1/3Co1/3Mn1/3O2 and with different synthesis conditions He P, Wang HR, Qi L, Osaka T |
633 - 637 |
A novel sol-gel method to synthesize nanocrystalline LiVPO4F and its electrochemical Li intercalation performances Li YZ, Zhou Z, Gao XP, Yan J |
638 - 644 |
Preparation of carbon-coated Sn powders and their loading onto graphite flakes for lithium ion secondary battery Morishita T, Hirabayashi T, Okuni T, Ota N, Inagaki M |
645 - 650 |
Electrochemical and thermal stability of a siloxane-based electrolyte on a lithium transition metal oxide cathode Nakahara H, Tanaka M, Yoon SY, Nutt S |
651 - 656 |
Improved electrochemical properties of a coin cell using LiMn1.5Ni0.5O4 as cathode in the 5 V range Singhal R, Das SR, Oviedo O, Tomar MS, Katiyar RS |
657 - 661 |
Synthesis and electrochemical properties of layered Li[Ni0.333Co0.333Mn0.293Al0.04]O2-zFz cathode materials prepared by the sol-gel method Liao L, Wang XY, Luo XF, Wang XM, Gamboa S, Sebastian PJ |
662 - 673 |
Power and thermal characterization of a lithium-ion battery pack for hybrid-electric vehicles Smith K, Wang CY |
674 - 680 |
Effect of organic acids and nano-sized ceramic doping on PEO-based solid polymer electrolytes Park JW, Jeong ED, Won MS, Shim YB |
681 - 683 |
Research of the simplified model of lead-acid battery discharge Semenenko MG |
684 - 687 |
Electrode properties of melt-spun Mg-Ni-Nd amorphous alloys Huang LJ, Liang GY, Sun ZB, Wu DC |
688 - 697 |
Iodide-based electrolytes: A promising alternative for thermal batteries Masset P |
698 - 703 |
The preparation of NaV1-xCrxPO4F cathode materials for sodium-ion battery Zhuo HT, Wang XY, Tang AP, Liu ZM, Gamboa S, Sebastian PJ |
704 - 710 |
Evaluation of nano-crystal sized alpha-nickel hydroxide as an electrode material for alkaline rechargeable cells Hu WK, Gao XP, Noreus D, Burchardt T, Nakstad NK |
711 - 715 |
Efficient photocurrent generation through a self-assembled monolayer of C-60-mercaptophenylanthrylacetylene Kang MS, Kang SH, Ma H, Kim KS, Jen AKY |
716 - 732 |
Redox flow cells for energy conversion de Leon CP, Frias-Ferrer A, Gonzalez-Garcia J, Szanto DA, Walsh FC |
733 - 743 |
Cationic substitution in gamma-type nickel (oxi)hydroxides as a means to prevent self-discharge in Ni/Zn primary batteries Barde F, Palacin MR, Beaudoin B, Christian PA, Tarascon JM |
744 - 751 |
Recycling of nickel-cadmium batteries - Thermogravimetric behavior of electrodes Espinosa DCR, Tenorio JAS |
752 - 757 |
Ionic conductivity measurements of molten iodide-based electrolytes Masset P, Henry A, Poinso JY, Poignet JC |
758 - 761 |
Single-walled carbon nanotubes modified by electrochemical treatment for application in electrochemical capacitors Liu CG, Fang HT, Li F, Liu M, Cheng HM |
762 - 763 |
Comment on "Studies on nanoporous glassy carbon as a new electrochemical capacitor material - [Y. Wen, G. Cao, Y. Yang, J. Power Sources 148 (2005) 121-128] Braun A |
764 - 764 |
Synthesis of the CoOOH fine nanoflake film with the high rate capacitance property (vol 158, pg 779, 2006) Hosono E, Fujihara S, Honma I, Ichihara M, Zhou HS |
765 - 772 |
Heat generation in double layer capacitors Schiffer J, Linzen D, Sauer DU |