1 - 17 |
Multi-input and multi-output neural model of the mechanical nonlinear behaviour of a PEM fuel cell system Rouss V, Charon W |
18 - 25 |
The effect of adsorption of thiourea on the particle size of supported platinum nanocatalysts synthesized by chemical reduction Ciapina EG, Carbonio EA, Colmati F, Gonzalez ER |
26 - 32 |
Pd nanoparticles supported on functionalized multi-walled carbon nanotubes (MWCNTs) and electrooxidation for formic acid Yang SD, Zhang XG, Mi HY, Ye XG |
33 - 39 |
Behaviors and mechanism of electrolyte electrophoresis during electrophoretic deposition Ciou SJ, Fung KZ, Chiang KW |
40 - 48 |
An investigation into the effects of a nano-thick gold interlayer on polypyrrole coatings on 316L stainless steel for the bipolar plates of PEPA fuel cells Wang Y, Northwood DO |
49 - 59 |
Single-step synthesis of sulfonated polyoxadiazoles and their use as proton conducting membranes Gomes D, Roeder J, Ponce ML, Nunes SP |
60 - 67 |
Thermodynamic predictions of the impact of fuel composition on the propensity of sulphur to interact with Ni and ceria-based anodes for solid oxide fuel cells Lohsoontorn P, Brett DJL, Brandon NP |
68 - 74 |
Development of cube-type SOFC stacks using anode-supported tubular cells Suzuki T, Funahashi Y, Yamaguchi T, Fujishiro Y, Awano M |
75 - 81 |
Thermal stabilities of nanoporous metallic electrodes at elevated temperatures Wang XH, Huang H, Holme T, Tian X, Prinz FB |
82 - 90 |
Polyoxymethylenedimethylether (CH3-O-(CH2-O)(n)-CH3) oxidation on Pt and Pt/Ru supported catalysts Vigier F, Coutanceau C, Leger JM, Dubois JL |
91 - 97 |
Phosphorus-doped glass proton exchange membranes for low temperature direct methanol fuel cells Prakash S, Mustain WE, Park S, Kohl PA |
98 - 105 |
Combined measurement of PEMFC performance decay and water droplet distribution under low humidity and high CO Murahashi T, Kobayashi H, Nishiyama E |
106 - 119 |
Effects of electrode wettabilities on liquid water behaviours in PEM fuel cell cathode Jiao K, Zhou B |
120 - 126 |
Hyperbranched-linear poly(ether sulfone) blend films for proton exchange membranes Grunzinger SJ, Watanabe M, Fukagawa K, Kikuchi R, Tominaga Y, Hayakawa T, Kakimoto MA |
127 - 136 |
An approach to modeling two-phase transport in the gas diffusion layer of a proton exchange membrane fuel cell Koido T, Furusawa T, Moriyama K |
137 - 144 |
Formation of Ce0.8Sm0.2O1.9 nanoparticles by urea-based low-temperature hydrothermal process Cheng MY, Hwang DH, Sheu HS, Hwang BJ |
145 - 158 |
Development of simulated gas diffusion layer of polymer electrolyte fuel cells and evaluation of its structure Inoue G, Yoshimoto T, Matsukuma Y, Minemoto M |
159 - 165 |
Methanol oxidation on carbon-supported Pt-Ru-Ni ternary nanoparticle electrocatalysts Liu JY, Cao JY, Huang QH, Li XW, Zou ZQ, Yang H |
166 - 174 |
Platinum nanoparticles supported on activated carbon fiber as catalyst for methanol oxidation Huang HX, Chen SX, Yuan C |
175 - 182 |
Preparation, characterization, and high performance of RuSe/C for direct methanol fuel cells Serov AA, Min M, Chai G, Han S, Kang S, Kwak C |
183 - 188 |
A novel self-humidifying membrane electrode assembly with water transfer region for proton exchange membrane fuel cells Wang ED, Shi PF, Du CY |
189 - 195 |
Characteristics of Ba0.5Sr0.5Co0.8Fe0.2O3-delta-La0.9Sr0.1Ga0.8Mg0.2O3-delta composite cathode for solid oxide fuel cell Liu BW, Zhang Y, Zhang LM |
196 - 200 |
Electricity production from twelve monosaccharides using microbial fuel cells Catal T, Li K, Bermek H, Liu H |
201 - 205 |
Improvement of cathode-electrolyte interfaces of tubular solid oxide fuel cells by fabricating dense YSZ electrolyte membranes with indented surfaces Dong DH, Liu MF, Xie K, Sheng J, Wang YH, Peng XB, Liu XQ, Meng GY |
206 - 210 |
Nanocomposite Ag-LSM solid oxide fuel cell electrodes Sholklapper TZ, Radmilovic V, Jacobson CP, Visco SJ, De Jonghe LC |
211 - 216 |
Platinum/carbon nanofiber nanocomposite synthesized by electrophoretic deposition as electrocatalyst for oxygen reduction Zheng JS, Wang MX, Zhang XS, Wu YX, Li P, Zhou XG, Yuan WK |
217 - 225 |
Novel Pd/beta-MnO2 nanotubes composites as catalysts for methanol oxidation in alkaline solution Xu MW, Gao GY, Zhou WJ, Zhang KF, Li HL |
226 - 231 |
Development of high-performance planar borohydride fuel cell modules for portable applications Liu BH, Li ZP, Suda S |
232 - 237 |
A new anode material for intermediate solid oxide fuel cells Bao WT, Guan HM, Cheng JH |
238 - 243 |
Performance of fuel cells with proton-conducting ceria-based composite electrolyte and nickel-based electrodes Huang JB, Mao ZQ, Liu ZX, Wang C |
244 - 249 |
Comparison of the electrochemical oxidation of borohydride and dimethylamine borane on platinum electrodes: Implication for direct fuel cells Martins JI, Nunes MC |
250 - 255 |
Pt/C doped by MoOx as the electrocatalyst for oxygen reduction and methanol oxidation Elezovic NR, Babic BM, Radmilovic VR, Gojkovic SL, Krstajic NV, Vracar LM |
256 - 260 |
Chemical modification of Nafion membrane with 3,4-ethylenedioxythiophene for direct methanol fuel cell application Li L, Zhang YM |
261 - 265 |
Analyses of fuel utilization in microfluidic fuel cell Phirani J, Basu S |
266 - 271 |
High dispersion and electrocatalytic activity of Pd/titanium dioxide nanotubes catalysts for hydrazine oxidation Dong B, He BL, Huang J, Gao GY, Yang Z, Li HL |
272 - 275 |
Comparative study on the performance of tubular solid oxide fuel cells with various Pr0.35Nd0.35Sr0.3MnO3/YSZ cathode layers made by different processes Dong DH, Liu MF, Xie K, Gao JF, Liu XQ, Meng GY |
276 - 287 |
Two-dimensional two-phase thermal model for passive direct methanol fuel cells Chen R, Zhao TS, Yang WW, Xu C |
288 - 295 |
A study of process parameters of LSM and LSM-YSZ composite cathode films prepared by screen-printing Piao JH, Sun KN, Zhang NQ, Xu S |
296 - 302 |
Performance characteristics of part-load operations of a solid oxide fuel cell/gas turbine hybrid system using air-bypass valves Yang JS, Sohn JL, Ro ST |
303 - 316 |
Identification of the Hammerstein model of a PEMFC stack based on least squares support vector machines Li CH, Zhu XJ, Cao GY, Sui S, Hu MR |
317 - 324 |
Electrochemical oxidation of borohydride at nano-gold-based electrodes: Application in direct borohydride fuel cells Coowar FA, Vitins G, Mepsted GO, Waring SC, Horsfall JA |
325 - 337 |
On the single chamber solid oxide fuel cells Riess I |
338 - 344 |
A comparison of the artificial neural network model and the theoretical model used for expressing the kinetics of electrophoretic deposition of YSZ on LSM Ciou SJ, Fung KZ, Chiang KW |
345 - 352 |
Effects of GDC interlayer on performance of low-temperature SOFCs Yang M, Yan AY, Zhang M, Hou ZF, Dong YL, Cheng MJ |
353 - 362 |
Modeling and optimizing the performance of a passive direct methanol fuel cell Yeh TK, Chen CH |
363 - 371 |
Fabrication of micro-channel arrays on thin metallic sheet using internal fluid pressure: Investigations on size effects and development of design guidelines Mahabunphachai S, Koc M |
372 - 382 |
DMFC anode polarization: Experimental analysis and model validation Casalegno A, Marchesi R |
383 - 389 |
Evaluation of activated carbon adsorbent for fuel cell cathode air filtration Ma XW, Yang DJ, Zhou W, Zhang CM, Pan XM, Xu L, Wu MZ, Ma JX |
390 - 396 |
Study on the mesocarbon microbeads/polyphenylene sulfide composite bipolar plates applied for proton exchange membrane fuel cells Yang T, Shi PF |
397 - 407 |
Local transport phenomena and cell performance of PEM fuel cells with various serpentine flow field designs Wang XD, Duan YY, Yan WM, Peng XF |
408 - 418 |
Water flux in membrane fuel cell humidifiers: Flow rate and channel location effects Cave R, Merida W |
419 - 429 |
On-line fault diagnostic system for proton exchange membrane fuel cells Riascos LAM, Simoes MG, Miyagi PE |
430 - 435 |
Preparation and performance of nanostructured porous thin cathode for low-temperature solid oxide fuel cells by spin-coating method Wang ZC, Weng WJ, Chen K, Shen G, Du PY, Han GR |
436 - 440 |
Preparation of Pr0.35Nd0.35Sr0.3MnO3-delta/YSZ composite cathode powders for tubular solid oxide fuel cells by microwave-induced monomer gelation and gel combustion synthesis process Dong DH, Gao HF, Liu MF, Chu GB, Diwu J, Liu XQ, Meng GY |
441 - 446 |
Nonlinear dynamic modeling for a SOFC stack by using a Hammerstein model Huo HB, Zhong ZD, Zhu XH, Tu HY |
447 - 451 |
Stability and robustness of metal-supported SOFCs Tucker MC, Lau GY, Jacobson CP, DeJonghe LC, Visco SJ |
452 - 457 |
Performance of a direct methanol alkaline membrane fuel cell Scott K, Yu E, Vlachogiannopoulos G, Shivare M, Duteanu N |
458 - 463 |
Influence of cathode oxygen transport on the discharging time of passive DMFC Lai QZ, Yin GP, Zhang H, Wang ZB, Cai KD, Liu P |
464 - 472 |
Liquid hydrogen production via hydrogen sulfide methane reformation Huang CP, T-Raissi A |
473 - 481 |
Temperature effect on electrochemical promotion of syngas cogeneration in direct-methane solid oxide fuel cells Huang TJ, Huang MC |
482 - 489 |
Production of hydrogen by ethanol steam reforming on Co/Al2O3 catalysts: Effect of addition of small quantities of noble metals Profeti LPR, Ticianelli EA, Assaf EM |
490 - 494 |
Hydrogen from aluminium in a flow reactor for fuel cell applications Jung CR, Kundu A, Ku B, Gil JH, Lee HR, Jang JH |
495 - 501 |
Factors affecting the electrochemical reactivity vs. lithium of carbon-free LiFePO4 thin films Sauvage F, Laffont L, Tarascon JM, Baudrin E |
502 - 509 |
Mesoporous Cr2O3 as negative electrode in lithium batteries: TEM study of the texture effect on the polymeric layer formation Dupont L, Laruelle S, Grugeon S, Dickinson C, Zhou W, Tarascon JM |
510 - 516 |
Electrochemical performance of mesoporous TiO2 anatase Kubiaka P, Geserick J, Husing N, Wohfahrt-Mehrens A |
517 - 525 |
Layered lithium cobalt nitrides: A new class of lithium intercalation compounds Ducrosa JB, Bach S, Pereira-Ramos JP, Willmann P |
526 - 532 |
Investigating the solid electrolyte interphase using binder-free graphite electrodes Kang SH, Abraham DP, Xiao A, Lucht BL |
533 - 539 |
Diphenyloctyl phosphate as a flame-retardant additive in electrolyte for Li-ion batteries Shim EG, Nam TH, Kim JG, Kim HS, Moon SI |
540 - 546 |
Interfacial reactions between graphite electrodes and propylene carbonate-based solutions: Electrolyte-concentration dependence of electrochemical lithium intercalation reaction Jeong SK, Inaba M, Iriyarna Y, Abe T, Ogumi Z |
547 - 552 |
The study of Mg2Si/carbon composites as anode materials for lithium ion batteries Yan JM, Huang HZ, Zhang J, Yang Y |
553 - 557 |
A simple route to high performance nanometric metallic materials for Li-ion batteries involving the use of cellulose: The case of Sb Caballero A, Morales J, Sanchez L |
558 - 563 |
Nano-sized SnSbCux alloy anodes prepared by co-precipitation for Li-ion batteries Wang F, Zhao MS, Song XP |
564 - 569 |
Morphology and electrochemical performance of Li[Ni1/3Co1/3Mn1/3]O-2 cathode material by a slurry spray drying method Lin B, Wen ZY, Gu ZH, Huang HH |
570 - 574 |
X-ray absorption spectra of the spinel LiCu0.5Mn1.5O4 Womes A, Lippensa PE, Leon B, Perez-Vicente C, Tirado JL |
575 - 580 |
Hybrid microwave synthesis and characterization of the compounds in the Li-Ti-O system Yang LH, Dong C, Guo J |
581 - 585 |
Cost-effective and ecologically safe electrolyte for lithium batteries Sirenko VI, Potapenko AV, Prisiazshnyi VD |
586 - 594 |
Influence of H2SO4 concentration on the performance of lead-acid battery negative plates Pavlov D, Petkova G, Rogachev T |
595 - 603 |
The roles of cellular and dendritic microstructural morphologies on the corrosion resistance of Pb-Sb alloys for lead acid battery grids Osorio WR, Rosa DM, Garcia A |
604 - 612 |
Corrosion of Pb-Ca-Sn alloy during potential step cycles Sawai K, Tsuboi Y, Shiota M, Hirai N, Osumi S |
613 - 620 |
A novel electrode-bipolar plate assembly for vanadium redox flow battery applications Qian P, Zhang H, Chen J, Wen Y, Luo Q, Liu Z, You D, Yi B |
621 - 624 |
Structure and electrochemical behaviour of metastable Mg50Ti50 alloy prepared by ball milling Rousselot S, Bichat MP, Guay D, Roue L |
625 - 629 |
Nickel oxyhydroxide/manganese dioxide composite as a candidate electrode material for alkaline secondary cells Ramesh TN, Kamath PV |
630 - 634 |
High-temperature characteristics of advanced Ni-MH batteries using nickel electrodes containing CaF2 Zhang X, Gong Z, Zhao S, Geng M, Wang Y, Northwood DO |
635 - 643 |
Development of a voltage-behavior model for NiMH batteries using an impedance-based modeling concept Thele M, Bohlen O, Sauer DU, Karden E |
644 - 650 |
Evaluation of carbon cryogels used as cathodes for non-flowing zinc-bromine storage cells Ayme-Perrot D, Walter S, Gabelica Z, Valange S |
651 - 656 |
Electric double layer capacitance on hierarchical porous carbons in an organic electrolyte Yamada H, Moriguchi I, Kudo T |
657 - 663 |
Anodic deposition of porous RuO2 on stainless steel for supercapacitor studies at high current densities Mondal SK, Munichandraiah N |
664 - 668 |
Modelling of the thermal behaviour of an ultracapacitor for a 42-V automotive electrical system Lee DH, Kim US, Shin CB, Lee BH, Kim BW, Kim YH |
669 - 674 |
Cathodic deposition and characterization of tin oxide coatings on graphite for electrochemical supercapacitors Wu MQ, Zhang LP, Wang DM, Xiao C, Zhang SR |
675 - 679 |
Performance of mesoporous carbons derived from poly(vinyl alcohol) in electrochemical capacitors Fernandez JA, Morishita T, Toyoda M, Inagaki M, Stoeckli F, Centeno TA |
680 - 685 |
Statically deposited nanostructured CoxNi1-x layered double hydroxides as electrode materials for redox-supercapacitors Gupta V, Gupta S, Miura N |
686 - 691 |
Hybrid supercapacitor based on MnO2 and columned FeOOH using Li2SO4 electrolyte solution Jin WH, Cao GT, Sun JY |
692 - 697 |
Novel thixotropic gel electrolytes based on dicationic bis-imidazolium salts for quasi-solid-state dye-sensitized solar cells Kim JY, Kim TH, Kim DY, Park NG, Ahn KD |