247 - 260 |
Recent anode advances in solid oxide fuel cells Sun CW, Stimming U |
261 - 267 |
Porous nickel MCFC cathode coated by potentiostatically deposited cobalt oxide III. Electrochemical behaviour in molten carbonate Escudero MJ, Ringuede A, Cassir M, Gonzalez-Ayuso T, Daza L |
268 - 274 |
Effect of cathode gas diffusion layer on water transport and cell performance in direct methanol fuel cells Xu C, Zhao TS, He YL |
275 - 281 |
Microbial fuel cell performance with non-Pt cathode catalysts HaoYu E, Cheng S, Scott K, Logan B |
282 - 293 |
Experimental and modelling studies of CO poisoning in PEM fuel cells Farrell CG, Gardner CL, Ternan M |
294 - 301 |
Enhancing PEM fuel cell performance by introducing additional thin layers to sputter-deposited Pt catalysts Gruber D, Muller J |
302 - 309 |
Pt/carbon nanofibers electrocatalysts for fuel cells Effect of the support oxidizing treatment Zaragoza-Martin F, Sopena-Escario D, Morallon E, de Lecea CSM |
310 - 320 |
From macro- to micro-single chamber solid oxide fuel cells Buergler BE, Ochsner M, Vuillemin S, Gauckler LJ |
321 - 330 |
Transient response of a proton exchange membrane fuel cell Weydahl H, Moller-Holst S, Hagen G, Borresen B |
331 - 339 |
Effect of carbon black support corrosion on the durability of Pt/C catalyst Wang JJ, Yin GP, Shao YY, Zhang S, Wang ZB, Gao YZ |
340 - 347 |
Cross-linked poly(vinyl alcohol) and poly(styrene sulfonic acid-co-maleic anhydride)-based semi-interpenetrating network as proton-conducting membranes for direct methanol fuel cells Lin CW, Huang YF, Kannan AM |
348 - 354 |
Enhanced Coulombic efficiency and power density of air-cathode microbial fuel cells with an improved cell configuration Fan YZ, Hu HQ, Liu H |
355 - 362 |
Enhanced ethanol oxidation on PbOx-containing electrode materials for fuel cell applications Suffredini HB, Salazar-Banda GR, Avaca LA |
363 - 372 |
Effect of morphological properties of ionic liquid-templated mesoporous anatase TiO2 on performance of PEMFC with Nafion/TiO2 composite membrane at elevated temperature and low relative humidity Chen SY, Han CC, Tsai CH, Huang J, Chen-Yang YW |
373 - 380 |
Methanol oxidation reaction on Ti/RuO2(x)Pt(1-x) electrodes prepared by the polymeric precursor method Freitas RG, Marchesi LR, Oliveira RTS, Mattos-Costa FI, Pereira EC, Bulhoes LOS, Santos MC |
381 - 387 |
RuxCrySez electrocatalyst loading and stability effects on the electrochemical performance in a PEMFC Suarez-Alcantara K, Rodriguez-Castellanos A, Duron-Torres S, Solorza-Feria O |
388 - 395 |
High proton-conducting Nafion (R)/-SO3H functionalized mesoporous silica composite membranes Lin YF, Yen CY, Ma CCM, Liao SH, Lee CH, Hsiao YH, Lin HP |
396 - 403 |
Development of preform moulding technique using expanded graphite for proton exchange membrane fuel cell bipolar plates Heo SI, Oh KS, Yun JC, Jung SH, Yang YC, Han KS |
404 - 411 |
Preparation of PtRu nanoparticles on various carbon supports using surfactants and their catalytic activities for methanol electro-oxidation Kim C, Kwon HH, Song IK, Sung YE, Chung WS, Lee HI |
412 - 423 |
A lumped parameter model of the polymer electrolyte fuel cell Chu K, Ryu J, Sunwoo M |
424 - 432 |
Electrical properties of carbon-based polypropylene composites for bipolar plates in polymer electrolyte membrane fuel cell (PEMFC) Dweiri R, Sahari J |
433 - 440 |
Cathode structure optimization for air-breathing DMFC by application of pore-forming agents Reshetenko TV, Kim HT, Kweon HJ |
441 - 447 |
Comparison of solid oxide fuel cell anode coatings prepared from different feedstock powders by atmospheric plasma spray method Kwon O, Kumar S, Park S, Lee C |
448 - 456 |
Screening of electrocatalysts for direct ammonia fuel cell: Ammonia oxidation on PtMe (Me : Ir, Rh, Pd, Ru) and preferentially oriented Pt(100) nanoparticles Vidal-Iglesias FJ, Solla-Gullon J, Montiel V, Feliu JM, Aldaz A |
457 - 463 |
Direct water balance analysis on a polymer electrolyte fuel cell (PEFC): Effects of hydrophobic treatment and micro-porous layer addition to the gas diffusion layer of a PEFC on its performance during a simulated start-up operation Nakajima H, Konomi T, Kitahara T |
464 - 470 |
Cycle analysis of low and high H-2 utilization SOFC/gas turbine combined cycle for CO2 recovery Araki T, Taniuchi T, Sunakawa D, Nagahama M, Onda K, Kato T |
471 - 476 |
Synthesis and characterization of Pt-Se/C electrocatalyst for oxygen reduction and its tolerance to methanol Wang RF, Liao SJ, Liu HY, Meng H |
477 - 482 |
Performance of metal-supported SOFCs with infiltrated electrodes Tucker MC, Lau GY, Jacobson CP, DeJonghe LC, Visco SJ |
483 - 488 |
Effect of pyrophosphates as supporting matrices on proton conductivity for NH4PO3 composites at intermediate temperatures Matsui T, Kazusa N, Kato Y, Iriyama Y, Abe T, Kikuchi K, Ogumi Z |
489 - 494 |
Effects of anode surface modification on the performance of low temperature SOFCs Ai N, Lu Z, Chen KF, Huang XQ, Du XB, Su WH |
495 - 498 |
Improvement of the performances of tubular solid oxide fuel cells by optimizing co-sintering temperature of the NiO/YSZ anode-YSZ electrolyte double layers Dong DH, Liu MF, Dong YC, Lin B, Yang JK, Meng G |
499 - 505 |
Ni catalyst wash-coated on metal monolith with enhanced heat-transfer capability for steam reforming Ryu JH, Lee KY, La H, Kim HJ, Yang JI, Jung H |
506 - 510 |
Ionic conductivity of Sm, Gd, Dy and Er-doped ceria Kuharuangrong S |
511 - 516 |
Influence of patterned electrode geometry on performance of co-planar, single-chamber, solid oxide fuel cell Ahn SJ, Kim YB, Moon J, Lee JH, Kim J |
517 - 523 |
The use of the heteropoly acids, H5PMo10V2O40, H-7[P2W17O61(Fe-III center dot OH2) or H-12[(P2W15O56)(2)Fe-4(III)(H2O)(2)], in the anode catalyst layer of a proton exchange membrane fuel cell Kuo MC, Limoges BR, Stanis RJ, Turner JA, Herring AM |
524 - 529 |
Stability of platinum particles on a carbon substrate investigated by atomic force microscopy and scanning electron microscopy Siroma Z, Ishii K, Yasuda K, Inaba M, Tasaka A |
530 - 534 |
Proton conduction in Nafion composite membranes filled with mesoporous silica Tominaga Y, Hong IC, Asai S, Sumita M |
535 - 539 |
Novel composite electrolyte membranes consisting of fluorohydrogenate ionic liquid and polymers for the unhumidified intermediate temperature fuel cell Lee JS, Nohira T, Hagiwara R |
540 - 545 |
CO-tolerant electrodes developed with PhosphoMolybdic acid for polymer electrolyte fuel cell (PEFCs) application Gatto I, Sacca A, Carbone A, Pedicini R, Urbani F, Passalacqua E |
546 - 551 |
Saccharide-based graphitic carbon nanocoils as supports for PtRu nanoparticles for methanol electrooxidation Sevilla M, Lota G, Fuertes AB |
552 - 557 |
Fe-substituted (La,Sr)TiO3 as potential electrodes for symmetrical fuel cells (SFCs) Canales-Vazquez J, Ruiz-Morales JC, Marrero-Lopez D, Pena-Martinez J, Nunez P, Gomez-Romero P |
558 - 566 |
Understanding and approaches for the durability issues of Pt-based catalysts for PEM fuel cell Shao YY, Yin GP, Gao YZ |
567 - 574 |
SnO2 : F coated austenite stainless steels for PEM fuel cell bipolar plates Wang H, Turner JA, Li X, Bhattacharya R |
575 - 584 |
Fabrication of polymer electrolyte membrane fuel cell MEAs utilizing inkjet print technology Towne S, Viswanathan V, Holbery J, Rieke P |
585 - 600 |
Two-dimensional dynamic simulation of a direct internal reforming solid oxide fuel cell Li J, Cao GY, Zhu XJ, Tu HY |
601 - 609 |
3D modeling of anode-supported planar SOFC with internal reforming of methane Nikooyeh K, Jeje AA, Hill JA |
610 - 616 |
Electrochemical impedance investigation of proton exchange membrane fuel cells experienced subzero temperature Hou JB, Song W, Yu HM, Fu Y, Shao ZG, Yi BL |
617 - 625 |
Experimental analysis and modeling for a circular-planar type IT-SOFC Bedogni S, Campanari S, Iora P, Montelatici L, Silva P |
626 - 633 |
Voltage instability in a simulated fuel cell stack correlated to cathode water accumulation Owejan JP, Trabold TA, Gagliardo J, Jacobson DL, Carter RN, Hussey DS, Arif M |
634 - 643 |
A dynamic 1D model of a solid oxide fuel cell for real time simulation Cheddie DF, Munroe NDH |
644 - 651 |
Visualization study on the dynamics of CO2 bubbles in anode channels and performance of a DMFC Liao Q, Zhu X, Zheng XY, Ding YD |
652 - 662 |
Metallic interconnects for SOFC: Characterisation of corrosion resistance and conductivity evaluation at operating temperature of differently coated alloys Fontana S, Amendola R, Chevalier S, Piccardo P, Caboche G, Viviani M, Molins R, Sennour M |
663 - 669 |
An efficient ceramic-based anode for solid oxide fuel cells Fu QX, Tietz F, Sebold D, Tao SW, Irvine JTS |
670 - 677 |
Diagnosis of PEM fuel cells through current interruption Rubio MA, Urquia A, Dormido S |
678 - 687 |
Quantitative MRI study of water distribution during operation of a PEM fuel cell using Teflon (R) flow fields Dunbar Z, Masel RI |
688 - 695 |
Adhesion of oxide scales grown on ferritic stainless steels in solid oxide fuel cells temperature and atmosphere conditions Chandra-Ambhorn S, Wouters Y, Antoni L, Toscan F, Galerie A |
696 - 705 |
A mathematical model of a tubular solid oxide fuel cell with specified combustion zone Jia JX, Abudula A, Wei LM, Jiang RQ, Shen SQ |
706 - 717 |
Determination of transport parameters for multiphase flow in porous gas diffusion electrodes using a capillary network model Markicevic B, Bazylak A, Djilali N |
718 - 727 |
Effects of temperature on the location of the gas-liquid interface in a PEM fuel cell Lee CI, Chu HS |
728 - 737 |
Operation-relevant modeling of an experimental proton exchange membrane fuel cell Hung AJ, Sung LY, Chen YH, Yu CC |
738 - 746 |
Numerical investigation of transient responses of a PEM fuel cell using a two-phase non-isothermal mixed-domain model Meng H |
747 - 753 |
Structure and impedance spectroscopy of La0.6Ca0.4Fe0.8Ni0.2O3-delta thin films grown by pulsed laser deposition de Larramendi IR, Ortiz N, Lopez-Anton R, de Larramendi JIR, Rojo T |
754 - 762 |
PEM fuel cell model representing steady-state, small-signal and large-signal characteristics Wingelaar PJH, Duarte JL, Hendrix MAM |
763 - 777 |
A single-phase model for liquid-feed DMFCs with non-Tafel kinetics Vera M |
778 - 782 |
Corrosion protection of 304 stainless steel bipolar plates using TiC films produced by high-energy micro-arc alloying process Ren YJ, Zeng CL |
783 - 788 |
Electrochemical characterization of YSZ thick films deposited by dip-coating process Mauvy F, Lenormand P, Lalanne C, Ansart F, Bassat JM, Grenier JC |
789 - 792 |
Characterisation of Ni-cermets SOFCs with varying anode densities Haanappel VAC, Mertens J, Malzbender J |
793 - 801 |
Development and experimental characterization of a fuel cell powered aircraft Bradley TH, Moffitt BA, Mavris DN, Parekh DE |
802 - 810 |
A systems approach for sizing a stand-alone residential PEMFC power system Selamogullari US, Willemain TR, Torrey DA |
811 - 817 |
Regeneration of an n-decanethiol-poisoned nickel catalyst Oudghiri-Hassani H, Abatzoglou N, Rakass S, Rowntree P |
818 - 825 |
The effect of coal syngas containing AsH3 on the performance of SOFCs: Investigations into the effect of operational temperature, current density and AsH3 concentration Trembly JP, Gemmen RS, Bayless DJ |
826 - 834 |
Feasibility of hydrogen production from coal electrolysis at intermediate temperatures Jin X, Botte GG |
835 - 841 |
Electrochemical separation of hydrogen from reformate using PEM fuel cell technology Gardner CL, Ternan M |
842 - 849 |
K(Na)-promoted Ni,Al layered double hydroxide catalysts for the steam reforming of methanol Qi CX, Amphlett JC, Peppley BA |
850 - 855 |
Inhibition of carbon formation during steam reforming of methane using thiol-coated nickel catalysts Oudghiri-Hassani H, Rakass S, Abatzoglou N, Rowntree P |
856 - 860 |
Direct oxidation of waste vegetable oil in solid-oxide fuel cells Zhou ZF, Kumar R, Thakur ST, Rudnick LR, Schobert H, Lvov SN |
861 - 869 |
Solvent-free, PYR1A TFSI ionic liquid-based ternary polymer electrolyte systems I. Electrochemical characterization Kim GT, Appetecchi GB, Alessandrini F, Passerini S |
870 - 878 |
Electrochemical properties of electrodeposited nicked phosphide thin films in lithium cells Cruz M, Morales J, Sanchez L, Santos-Pena J, Martin F |
879 - 885 |
New freeze-drying method for LiFePO4 synthesis Palomares V, Goni A, de Muro LG, de Meatza I, Bengoechea M, Miguel O, Rojo T |
886 - 893 |
Practical silicon-based composite anodes for lithium-ion batteries: Fundamental and technological features Dimov N, Xia Y, Yoshio M |
894 - 903 |
Structural and electrochemical properties of LiNi1/3Co1/3Mn1/3O2: Calcination temperature dependence Fujii Y, Miura H, Suzuki N, Shoji T, Nakayama N |
904 - 907 |
Effect of Cu2O coating on graphite as lithium ion battery in PC-based anode material of electrolyte Fu L, Gao J, Zhang T, Cao Q, Yang LC, Wu YP, Holze R |
908 - 912 |
Effect of Mg-doping on the structural and electronic properties of LiCoO2: A first-principles investigation Shi S, Ouyang C, Lei M, Tang W |
913 - 916 |
Novel polymer electrolytes based on triblock poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) with ionically active SiO2 Wang XL, Mei A, Li XL, Lin YH, Nan CW |
917 - 921 |
Effect of carbon coating on LiNi1/3Mn1/3Co1/3O2 cathode material for lithium secondary batteries Kim HS, Kong M, Kim K, Kim IJ, Gu HB |
922 - 927 |
Influence of Mg doping on the performance of LiNiO2 matrix ceramic nanoparticles in high-voltage lithium-ion cells Sathiyamoorthi R, Shakkthivel P, Ramalakshmi S, Shul YG |
928 - 931 |
An electrochemical investigation of a Sn-Co-C ternary alloy as a negative electrode in Li-ion batteries Hassoun J, Panero S, Mulas G, Scrosati B |
932 - 937 |
Charge/discharge behavior of plasma-fluorinated natural graphites in propylene carbonate-containing solvent Achiha T, Shibata S, Nakajima T, Ohzawa Y, Tressaud A, Durand E |
938 - 943 |
Properties of the graphite-lithium anode in N-methyl-N -propylpiperidinium bis(trifluoromethanesulfonyl) imide as an electrolyte Lewandowski A, Swiderska-Mocek A |
944 - 947 |
New lithium salts with croconato-complexes of boron for lithium battery electrolytes Xue ZM, Wu KN, Liu B, Chen CH |
948 - 952 |
Solvothermal synthesis and ex situ XRD study of nano-Ni3Sn2 used as an anode material for lithium-ion batteries Qin HY, Zhao XB, Jiang NP, Li ZP |
953 - 959 |
Electrochemical recycling of cobalt from cathodes of spent lithium-ion batteries Freitas MBJG, Garcia EM |
960 - 965 |
Desulphurization of damped battery paste by sodium carbonate and sodium hydroxide Lyakov NK, Atanasova DA, Vassilev VS, Haralampiev GA |
966 - 980 |
Advances in Fe(VI) charge storage part I. primary alkaline super-iron batteries Yu XW, Lich S |
981 - 989 |
Effects of surface coating of Y(OH)(3) on the electrochemical performance of spherical Ni(OH)(2) Fan J, Yang Y, Yu P, Chen W, Shao H |
990 - 998 |
Nanocrystalline TiO2 film with textural channels: Exhibiting enhanced performance in quasi-solid/solid-state dye-sensitized solar cells Chen ZA, Tang YW, Yang H, Xia YY, Li FY, Yi T, Huang CH |
999 - 1009 |
A new powder morphology for making high-porosity nickel structures Cormier E, Wasmund EB, Renny LV, Yang QM, Charles D |
1010 - 1022 |
Advances in Fe(VI) charge storage Part II. Reversible alkaline super-iron batteries and nonaqueous super-iron batteries Yu XW, Licht S |
1023 - 1032 |
Dynamic electrochemical model of an alkaline fuel cell stack Duerr M, Gair S, Cruden A, McDonald J |
1033 - 1039 |
High-power nickel/metal-hydride battery using new micronetwork substrate: Discharge rate capability and cycle-life performance Yao M, Okuno K, Iwaki T, Tanase S, Harada K, Kato M, Emura K, Sakai T |
1040 - 1045 |
Characterization of 109 Ah Ni-MH batteries charging with hydrogen sensing termination Viera JC, Gonzalez M, Liaw BY, Ferrero FJ, Alvarez JC, Campo JC, Blanco C |
1046 - 1053 |
Causes of supercapacitors ageing in organic electrolyte Azais P, Duclaux L, Florian P, Massiot D, Lillo-Rodenas MA, Linares-Solano A, Peres JP, Jehoulet C, Beguin F |
1054 - 1061 |
The electrochemical capacitance of nanoporous carbons in aqueous and ionic liquids Liu HT, Zhu GY |
1062 - 1068 |
Electrochemical performance of polyaniline nanofibres and polyaniline/multi-walled carbon nanotube composite as an electrode material for aqueous redox supercapacitors Sivakkumar SR, Kim WJ, Choi JA, MacFarlane DR, Forsyth M, Kim DW |