2433 - 2444 |
Palladium-based electrocatalysts for hydrogen oxidation and oxygen reduction reactions Shao M |
2445 - 2451 |
Dependence of open-circuit potential and power density on electrolyte thickness in solid oxide fuel cells with mixed conducting electrolytes Duncan KL, Lee KT, Wachsman ED |
2452 - 2460 |
Materials processing for lithium-ion batteries Li JL, Daniel C, Wood D |
2461 - 2468 |
Evaluation of carbon deposition behavior on the nickel/yttrium-stabilized zirconia anode-supported fuel cell fueled with simulated syngas Chen T, Wang WG, Miao H, Li TS, Xu C |
2469 - 2474 |
High activity of Pd-WO3/C catalyst as anodic catalyst for direct formic acid fuel cell Feng LG, Yan LA, Cui ZM, Liu CP, Xing W |
2475 - 2482 |
Fabrication of anode support for solid oxide fuel cell using zirconium hydroxide as a pore former Kim M, Lee J, Han JH |
2483 - 2489 |
Stability enhancement of polymer electrolyte membrane fuel cells based on a sulfonated poly(ether ether ketone)/poly(vinylidene fluoride) composite membrane Sung KA, Kim WK, Oh KH, Choo MJ, Nam KW, Park JK |
2490 - 2497 |
Evaluating chemical degradation of proton conducting perfluorosulfonic acid ionomers in a Fenton test by solid-state F-19 NMR spectroscopy Ghassemzadeh L, Kreuer KD, Maier J, Muller K |
2498 - 2512 |
Preparation and property-performance relationships in samarium-doped ceria nanopowders for solid oxide fuel cell electrolytes Kosinski MR, Baker RT |
2513 - 2518 |
Study of a proton exchange membrane fuel cells catalyst subjected to anodic operating conditions, by synchrotron-based scanning photoelectron microscopy (SPEM) and high lateral-resolution X-ray photoelectron spectroscopy Bozzini B, Amati M, Boniardi M, Abyaneh MK, Gregoratti L, Kiskinova M |
2519 - 2529 |
Single-site and nanosized Fe-Co electrocatalysts for oxygen reduction: Synthesis, characterization and catalytic performance Bambagioni V, Bianchini C, Filippi J, Lavacchi A, Oberhauser W, Marchionni A, Moneti S, Vizza F, Psaro R, Dal Santo V, Gallo A, Recchia S, Sordelli L |
2530 - 2538 |
XPS investigations of the proton exchange membrane fuel cell active layers aging: Characterization of the mitigating role of an anodic CO contamination on cathode degradation Parry V, Berthome G, Joud JC, Lemaire O, Franco AA |
2539 - 2544 |
NiO-CGO in situ nanocomposite attainment: One step synthesis Cela B, de Macedo DA, de Souza GL, Martinelli AE, do Nascimento RM, Paskocimas CA |
2545 - 2550 |
Syngas reactivity over (LaAg)(CoFe)O-3 and Ag-added (LaSr)(CoFe)O-3 anodes of solid oxide fuel cells Huang TJ, Chen CM |
2551 - 2557 |
Electrochemical characteristics of samaria-doped ceria infiltrated strontium-doped LaMnO3 cathodes with varied thickness for yttria-stabilized zirconia electrolytes Ding D, Gong MY, Xu CC, Baxter N, Li YH, Zondlo J, Gerdes K, Liu XB |
2558 - 2566 |
Reactant recirculation system utilizing pressure swing for proton exchange membrane fuel cell Uno M, Shimada T, Tanaka K |
2567 - 2572 |
Simultaneous processes of electricity generation and ceftriaxone sodium degradation in an air-cathode single chamber microbial fuel cell Wen Q, Kong FY, Zheng HT, Yin JL, Cao DX, Ren YM, Wang GL |
2573 - 2583 |
Improving the proton conductivity and water uptake of polybenzimidazole-based proton exchange nanocomposite membranes with TiO2 and SiO2 nanoparticles chemically modified surfaces Namazi H, Ahmadi H |
2584 - 2594 |
Performance and liquid water distribution in PEFCs with different anisotropic fiber directions of the GDL Naing KSS, Tabe Y, Chikahisa T |
2595 - 2601 |
Activation of dispersed PtSn/C nanoparticles by tungsten oxide matrix towards more efficient oxidation of ethanol Miecznikowski K, Kulesza PJ |
2602 - 2607 |
Electrochemical performance of BaZr0.1Ce0.7Y0.1Yb0.1O3-delta electrolyte based proton-conducting SOFC solid oxide fuel cell with layered perovskite PrBaCo2O5+delta cathode Ding HP, Xie YY, Xue XJ |
2608 - 2614 |
Pt/Y0.16Zr0.84O1.92/Pt thin film solid oxide fuel cells: Electrode microstructure and stability considerations Kerman K, Lai BK, Ramanathan S |
2615 - 2620 |
Kinetic study of Nafion degradation by Fenton reaction Sugawara T, Kawashima N, Murakami TN |
2621 - 2626 |
Pt nanoparticles supported on WO3/C hybrid materials and their electrocatalytic activity for methanol electro-oxidation Cui ZM, Feng LG, Liu CP, Xing W |
2627 - 2630 |
Electrochemical characterizations of microtubular solid oxide fuel cells under a long-term testing at intermediate temperature operation Yamaguchi T, Galloway KV, Yoon J, Sammes NM |
2631 - 2634 |
A cobalt-free Sm0.5Sr0.5Fe0.8Cu0.2O3-delta-Ce0.8Sm0.2O2-delta composite cathode for proton-conducting solid oxide fuel cells Ling YH, Yu J, Lin B, Zhang XZ, Zhao L, Liu XQ |
2635 - 2639 |
Simultaneous visualization of oxygen distribution and water blockages in an operating triple-serpentine polymer electrolyte fuel cell Takada K, Ishigami Y, Inukai J, Nagumo Y, Takano H, Nishide H, Watanabe M |
2640 - 2643 |
Impact of pore microstructure evolution on polarization resistance of Ni-Yttria-stabilized zirconia fuel cell anodes Cronin JS, Wilson JR, Barnett SA |
2644 - 2649 |
Out-of-phase thermo-mechanical coupling behavior of proton exchange membranes Chen X, Yan L, Wang ZF, Liu D |
2650 - 2660 |
Performance test and degradation analysis of direct methanol fuel cell membrane electrode assembly during freeze/thaw cycles Cha HC, Chen CY, Wang RX, Chang CL |
2661 - 2668 |
Performance improvement of proton exchange membrane fuel cell by using annular shaped geometry Khazaee I, Ghazikhani M |
2669 - 2675 |
Low methanol crossover and high efficiency direct methanol fuel cell: The influence of diffusion layers Casalegno A, Santoro C, Rinaldi F, Marchesi R |
2676 - 2681 |
Generation of electricity in microbial fuel cells at sub-ambient temperatures Catal T, Kavanagh P, O'Flaherty V, Leech D |
2682 - 2690 |
Solid oxide fuel cell hybrid system: Control strategy for stand-alone configurations Ferrari ML |
2691 - 2698 |
MCFC integrated system in a biodiesel production process Urbani F, Freni S, Galvagno A, Chiodo V |
2699 - 2708 |
Performance of composite Nafion/PVA membranes for direct methanol fuel cells Molla S, Compan V |
2709 - 2716 |
Compliant alkali silicate sealing glass for solid oxide fuel cell applications: Thermal cycle stability and chemical compatibility Chou YS, Thomsen EC, Williams RT, Choi JF, Canfield NL, Bonnett JF, Stevenson JW, Shyam A, Lara-Curzio E |
2717 - 2724 |
Effect of dynamic operation on chemical degradation of a polymer electrolyte membrane fuel cell Jung MJ, Williams KA |
2725 - 2734 |
Analysis of liquid water transport in fuel cell gas diffusion media using two-mobile phase pore network simulations Markicevic B, Djilali N |
2735 - 2749 |
Systematic characterization of a PBI/H3PO4 sol-gel membrane-Modeling and simulation Siegel C, Bandlamudi G, Heinzel A |
2750 - 2753 |
Single passive direct methanol fuel cell supplied with pure methanol Feng LG, Zhang J, Cai WW, Liangliang, Xing W, Liu CP |
2754 - 2758 |
Ceria-based nanocomposite with simultaneous proton and oxygen ion conductivity for low-temperature solid oxide fuel cells Wang XD, Ma Y, Li SH, Kashyout AH, Zhu B, Muhammed M |
2759 - 2762 |
Behaviors of proton exchange membrane fuel cells under oxidant starvation Dou ML, Hou M, Liang D, Shen QA, Zhang HB, Lu WT, Shao ZG, Yi BL |
2763 - 2767 |
Fuel utilization and fuel sensitivity of solid oxide fuel cells Huang K |
2768 - 2772 |
Low temperature deposited (Ce,Gd)O2-x interlayer for La0.6Sr0.4Co0.2Fe0.8O3 cathode based solid oxide fuel cell Gong YH, Ji WJ, Zhang L, Li M, Xie B, Wang HQ, Jiang YS, Song YZ |
2773 - 2778 |
Hydrogen production via urea electrolysis using a gel electrolyte King RL, Botte GG |
2779 - 2784 |
The conversion among reactions at Ni-based anodes in solid oxide fuel cells with low concentrations of dry methane You HX, Gao HJ, Chen G, Abudula A, Ding XW |
2785 - 2789 |
Hydrolytic dehydrogenation of ammonia borane catalyzed by carbon supported Co core-Pt shell nanoparticles Yang XJ, Cheng FY, Tao ZL, Chen J |
2790 - 2801 |
Influence of surface modification of LiCoO2 by organic compounds on electrochemical and thermal properties of Li/LiCoO2 rechargeable cells Takeuchi T, Kyuna T, Morimoto H, Tobishima S |
2802 - 2809 |
High discharge capacity solid composite polymer electrolyte lithium battery Chen YT, Chuang YC, Su JH, Yu HC, Chen-Yang YW |
2810 - 2818 |
A polyethylene glycol-assisted carbothermal reduction method to synthesize LiFePO4 using industrial raw materials Fey GTK, Huang KP, Kao HM, Li WH |
2819 - 2825 |
The electrochemical behaviour of the carbon-coated Ni0.5TiOPO4 electrode material Maher K, Edstrom K, Saadoune I, Gustafsson T, Mansori M |
2826 - 2834 |
Highly conductive and electrochemically stable plasticized blend polymer electrolytes based on PVdF-HFP and triblock copolymer PPG-PEG-PPG diamine for Li-ion batteries Saikia D, Wu HY, Pan YC, Lin CP, Huang KP, Chen KN, Fey GTK, Kao HM |
2835 - 2840 |
A thin layer including a carbon material improves the rate capability of an electric double layer capacitor Sato T, Marukane S, Morinaga T, Uemura T, Fukumoto K, Yamazaki S |
2841 - 2847 |
A novel sol-gel method based on FePO4 center dot 2H(2)O to synthesize submicrometer structured LiFePO4/C cathode material Peng WX, Jiao LF, Gao HY, Qi Z, Wang QH, Du HM, Si YC, Wang YJ, Yuan HT |
2848 - 2853 |
Structural transformation of layered hydrogen trititanate (H2Ti3O7) to TiO2(B) and its electrochemical profile for lithium-ion intercalation Zhu GN, Wang CX, Xia YY |
2854 - 2857 |
Carboxymethylcellulose and carboxymethylcellulose-formate as binders in MgH2-carbon composites negative electrode for lithium-ion batteries Zaidi W, Oumellal Y, Bonnet JP, Zhang J, Cuevas F, Latroche M, Bobet JL, Aymard L |
2858 - 2862 |
Nanosized LiMn2O4 powders prepared by flame spray pyrolysis from aqueous solution Yi FH, Kim JH, Koo HY, Ko YN, Kang YC, Lee JH |
2863 - 2866 |
A new form of manganese carbonate for the negative electrode of lithium-ion batteries Aragon MJ, Leon B, Vicente CP, Tirado JL |
2867 - 2870 |
Partially fluorinated solvent as a co-solvent for the non-aqueous electrolyte of Li/air battery Zhang SS, Read J |
2871 - 2874 |
Template-assisted synthesis of high packing density SrLi2Ti6O14 for use as anode in 2.7-V lithium-ion battery Dambournet D, Belharouak I, Ma JW, Amine K |
2875 - 2878 |
C-rate performance of silicon oxycarbide anodes for Li plus batteries enhanced by carbon nanotubes Shen J, Ahn D, Raj R |
2879 - 2883 |
Electrochemical synthesis of macroporous aluminium films and their behavior towards lithium deposition/stripping Gasparotto LHS, Prowald A, Borisenko N, El Abedin SZ, Garsuch A, Endres F |
2884 - 2888 |
Recent results on aqueous electrolyte cells Wessells C, Huggins RA, Cui Y |
2889 - 2892 |
High capacity graphite-silicon composite anode material for lithium-ion batteries Fuchsbichler B, Stangl C, Kren H, Uhlig F, Koller S |
2893 - 2898 |
Comparative study of composite electrodes containing tin, polyacrylonitrile and cobalt or iron Nacimiento F, Alcantara R, Tirado JL |
2899 - 2904 |
Comprehensive improvements in Li-ion batteries for demanding applications Gulbinska M, Moore G, Santee S, Lucht B, Puglia F |
2905 - 2912 |
Thermomechanical analysis and durability of commercial micro-porous polymer Li-ion battery separators Love CT |
2913 - 2923 |
Linear parameter varying battery model identification using subspace methods Hu Y, Yurkovich S |
2924 - 2932 |
A field operational test on valve-regulated lead-acid absorbent-glass-mat batteries in micro-hybrid electric vehicles. Part I. Results based on kernel density estimation Schaeck S, Karspeck T, Ott C, Weckler M, Stoermer AO |
2933 - 2938 |
A field operational test on valve-regulated lead-acid absorbent-glass-mat batteries in micro-hybrid electric vehicles. Part II. Results based on multiple regression analysis and tear-down analysis Schaeck S, Karspeck T, Ott C, Weirather-Koestner D, Stoermer AO |
2939 - 2944 |
Effects of tetrabutoxytitanium on photoelectrochemical properties of plastic-based TiO2 film electrodes for flexible dye-sensitized solar cells Fan K, Peng TY, Chen JN, Dai K |