581 - 587 |
Thermal modeling and heat management of supercapacitor modules for vehicle applications Al Sakka M, Gualous H, Van Mierlo J, Culcu H |
588 - 600 |
A review of platinum-based catalyst layer degradation in proton exchange membrane fuel cells Zhang SS, Yuan XZ, Hin JNC, Wang HJ, Friedrich KA, Schulze M |
601 - 609 |
Ionic liquids as electrolytes for Li-ion batteries-An overview of electrochemical studies Lewandowski A, Swiderska-Mocek A |
610 - 617 |
Mass spectroscopy for the anode gas layer in a semi-passive DMFC using porous carbon plate Part I: Relationship between the gas composition and the current density Masdar MS, Tsujiguchi T, Nakagawa N |
618 - 624 |
Mass spectroscopy for the anode gas layer in a semi-passive direct methanol fuel cell using porous carbon plate Part II. Relationship between the reaction products and the methanol and water vapor pressures Masdar MS, Tsujiguchi T, Nakagawa N |
625 - 630 |
La0.84Sr0.16MnO3-delta cathodes impregnated with Bi1.4Er0.6O3 for intermediate-temperature solid oxide fuel cells Li JL, Wang SR, Wang ZR, Liu RZ, Wen TL, Wen ZY |
631 - 639 |
Effect of synthesis process on the microstructure and electrical conductivity of nickel/yttria-stabilized zirconia powders prepared by urea hydrolysis Lin JD, Wu ZL |
640 - 645 |
Low-temperature sintering behaviors of nanosized Ce0.8Gd0.2O1.9 powder synthesized by co-precipitation combined with supercritical drying Liang JP, Zhu QS, Xie ZH, Huang WL, Hu CQ |
646 - 654 |
Nafion (R) nanocomposite membranes: Effect of fluorosurfactants on hydrophobic silica nanoparticle dispersion and direct methanol fuel cell performance Park CH, Kim HK, Lee CH, Park HB, Lee YM |
655 - 661 |
Use of purine and pyrimidine bases as nitrogen sources of active site in oxygen reduction catalyst Maruyama J, Fukui N, Kawaguchi M, Abe I |
662 - 667 |
Conductive area ratio of multiblock copolymer electrolyte membranes evaluated by e-AFM and its impact on fuel cell performance Takimoto N, Takamuku S, Abe M, Ohira A, Lee HS, McGrath JE |
668 - 673 |
Carbon nanotubes supported Pt-Au catalysts for methanol-tolerant oxygen reduction reaction: A comparison between Pt/Au and PtAu nanoparticles Wang JJ, Yin GP, Liu H, Li RY, Flemming RL, Sun XL |
674 - 682 |
Direct methanol fuel cell performance of sulfonated polyrimide membranes Hu ZX, Ogou T, Yoshino M, Yamada O, Kita H, Okamoto KI |
683 - 689 |
High catalytic performance and stability of Pt/C using acetic acid functionalized carbon Ye JL, Liu JG, Zhou Y, Zou ZG, Gu J, Yu T |
690 - 696 |
Characterization of the 75% Gd0.8Sr0.2CoO3-delta/25% Ce0.9Gd0.1O2-delta composite cathode system for use in intermediate temperature solid oxide fuel cells Kilius LB, Krstic V |
697 - 703 |
Numerical study to examine the performance of multi-pass serpentine flow-fields for cooling plates in polymer electrolyte membrane fuel cells Yu SH, Sohn S, Nam JH, Kim CJ |
704 - 711 |
Structural, thermal and electrochemical properties of layered perovskite SmBaCo2O5+d, a potential cathode material for intermediate-temperature solid oxide fuel cells Kim JH, Kim Y, Connor PA, Irvine JTS, Bae J, Zhou WZ |
712 - 729 |
Modelling and analysis of a direct methanol fuel cell with under-rib mass transport and two-phase flow at the anode Yang YM, Liang YC |
730 - 736 |
Implantation of Nafion (R) ionomer into polyvinyl alcohol/chitosan composites to form novel proton-conducting membranes for direct methanol fuel cells Zhang YW, Cui ZM, Liu CP, Xing W, Zhang JJ |
737 - 745 |
Composition dependence of ternary Pt-Ni-Cr catalyst activity for the methanol electro-oxidation reaction Jeon MK, McGinn PJ |
746 - 752 |
Molecular structure and transport dynamics in Nafion and sulfonated poly(ether ether ketone ketone) membranes Chen PY, Chiu CP, Hong CW |
753 - 762 |
Transport through mixed proton, oxygen ion and electron (hole) conductors: Goldman-Hodgkin-Katz-type equation Virkar AV |
763 - 773 |
Numerical modeling and analysis of micro-porous layer effects in polymer electrolyte fuel cells Kang K, Ju H |
774 - 785 |
Thermodynamic analysis of gasification-driven direct carbon fuel cells Lee AC, Mitchell RE, Gur TM |
786 - 793 |
Synthesis of LiFe1-xNixPO4/C composites and their electrochemical performance Lu Y, Shi JC, Guo ZP, Tong QS, Huang WJ, Li BY |
794 - 800 |
Studies of tin-transition metal-carbon and tin-cobalt-transition metal-carbon negative electrode materials prepared by mechanical attrition Ferguson PP, Martine ML, George AE, Dahn JR |
801 - 804 |
Novel cobalt-free cathode materials BaCexFe1-xO3-delta for proton-conducting solid oxide fuel cells Tao ZT, Bi L, Zhu ZW, Liu W |
805 - 810 |
High-performance core-shell PdPt@Pt/C catalysts via decorating PdPt alloy cores with Pt Wu YN, Liao SJ, Liang ZX, Yang LJ, Wang RF |
811 - 814 |
A poly(R1R2R3)-N+/H3PO4 composite membrane for phosphoric acid polymer electrolyte membrane fuel cells Li MQ, Scott K, Wu X |
815 - 817 |
High performance layered SmBa0.5Sr0.5Co2O5+delta cathode for intermediate-temperature solid oxide fuel cells Ding HP, Xue XJ, Liu XQ, Meng GY |
818 - 823 |
Experimental investigation of current distribution in a direct methanol fuel cell with serpentine flow-fields under various operating conditions Park SM, Kim SK, Lim S, Jung DH, Peck DH, Hong WH |
824 - 829 |
Carbon-supported Pd catalysts: Influences of nanostructure on their catalytic performances for borohydride electrochemical oxidation Yang JQ, Liu BH, Wu S |
830 - 834 |
First-principles investigation of the bonding, optical and lattice dynamical properties of CeO2 Shi SQ, Ke XZ, Ouyang CY, Zhang H, Ding HC, Tang YH, Zhou WW, Li PJ, Lei MS, Tang WH |
835 - 837 |
High performance of proton-conducting solid oxide fuel cell with a layered PrBaCo2O5+delta cathode Zhao L, He BB, Lin B, Ding HP, Wang SL, Ling YH, Peng RR, Meng GY, Liu XQ |
838 - 842 |
Hydrophilic treatment poly(tetrafluoroethylene) reinforced sulfonated poly(ether ether ketone) composite membrane for proton exchange membrane fuel cell application Bi C, Zhang HM, Zhang Y, Xiao SH |
843 - 846 |
Superprotonic KH(PO3H)-SiO2 composite electrolyte for intermediate temperature fuel cells Bondarenko AS, Zhou WH, Bouwmeester HJM |
847 - 853 |
Study of the cell reversal process of large area proton exchange membrane fuel cells under fuel starvation Liang D, Shen Q, Hou M, Shao ZG, Yi BL |
854 - 863 |
Three-dimensional modeling of planar solid oxide fuel cells and the rib design optimization Liu SX, Kong W, Lin ZJ |
864 - 872 |
A transient analysis of a micro-tubular solid oxide fuel cell (SOFC) Serincan MF, Pasaogullari U, Sammes NM |
873 - 879 |
Fatigue and creep to leak tests of proton exchange membranes using pressure-loaded blisters Li YQ, Dillard DA, Case SW, Ellis MW, Lai YH, Gittleman CS, Miller DP |
880 - 885 |
Thermal cycle stability of BaO-B2O3-SiO2 sealing glass Peng L, Zhu QS |
886 - 898 |
Effects of operations and structural parameters on the one-cell stack performance of planar solid oxide fuel cell Xia WS, Yang YZ, Wang QS |
899 - 907 |
Spatially resolved degradation effects in membrane-electrode-assemblies of vehicle aged polymer electrolyte membrane fuel cell stacks Ettingshausen F, Kleemann J, Michel M, Quintus M, Fuess H, Roth C |
908 - 919 |
Physics-based modeling of a low-temperature solid oxide fuel cell with consideration of microstructure and interfacial effects Yuan K, Ji Y, Chung JN |
920 - 930 |
Control of a heat-integrated proton exchange membrane fuel cell system with methanol reforming Wu W, Pai CC |
931 - 940 |
Analysis and optimization of flow distribution in parallel-channel configurations for proton exchange membrane fuel cells Zhang WG, Hu P, Lai XM, Peng LF |
941 - 949 |
Miniaturization limits for single-chamber micro-solid oxide fuel cells with coplanar electrodes Kuhn M, Napporn TW, Meunier M, Vengallatore S, Therriault D |
950 - 960 |
Microcracking in electron beam deposited scandia-stabilised zirconia electrolyte Lugovy M, Slyunyayev V, Steinberger-Wilckens R |
961 - 966 |
Intermediate temperature single-chamber methane fed SOFC based on Gd doped ceria electrolyte and La0.5Sr0.5CoO3-delta as cathode Morales M, Pinol S, Segarra M |
967 - 971 |
A high performance intermediate temperature fuel cell based on a thick oxide-carbonate electrolyte Zhang L, Lan R, Xu XX, Tao SW, Jiang YZ, Kraft A |
972 - 975 |
Performance of gold-coated titanium bipolar plates in unitized regenerative fuel cell operation Jung HY, Huang SY, Ganesan P, Popov BN |
976 - 980 |
Chromium nitride films on stainless steel as bipolar plate for proton exchange membrane fuel cell Wu B, Fu Y, Xu J, Lin GQ, Hou M |
981 - 984 |
Performance of a high Cr and Ni austenitic stainless steel bipolar plates in proton exchange membrane fuel cell working environments Tian RJ, Sun JC |
985 - 990 |
Carbon-coated graphite for anode of lithium ion rechargeable batteries: Graphite substrates for carbon coating Ohta N, Nagaoka K, Hoshi K, Bitoh S, Inagaki M |
991 - 996 |
Control of variable power conditions for a membraneless direct methanol fuel cell Lam A, Wilkinson DP, Zhang JJ |
997 - 1006 |
Three-dimensional modeling of hydrogen sorption in metal hydride hydrogen storage beds Wang Y, Adroher XC, Chen JX, Yang XG, Miller T |
1007 - 1020 |
Thermodynamic analysis of diesel reforming process: Mapping of carbon formation boundary and representative independent reactions Parmar RD, Kundu A, Karan K |
1021 - 1023 |
Unsupported claims of ultrafast charging of LiFePO4 Li-ion batteries Zaghib K, Goodenough JB, Mauger A, Julien C |
1024 - 1028 |
Response to "unsupported claims of ultrafast charging of Li-ion batteries" Ceder G, Kang B |
1029 - 1035 |
Physical and electrochemical properties of LiFePO4 nanoparticles synthesized by a combination of spray pyrolysis with wet ball-milling Konarova M, Taniguchi I |
1036 - 1042 |
Surface modified LiFePO4/C nanocrystals synthesis by organic molecules assisted supercritical water process Rangappa D, Ichihara M, Kudo T, Honma I |
1043 - 1052 |
In situ electrochemical synthesis of lithiated silicon-carbon based composites anode materials for lithium ion batteries Datta MK, Kumta PN |
1053 - 1060 |
Effect of combinations of additives on the performance of lithium ion batteries Santee S, Xiao A, Yang L, Gnanaraj J, Lucht BL |
1061 - 1067 |
Electrochemical properties of negative SiMox electrodes deposited on a roughened substrate for rechargeable lithium batteries Hwang CM, Lim CH, Yang JH, Park JW |
1068 - 1074 |
Electrochemical stability of bis(trifluoromethanesulfonyl)imide-based ionic liquids at elevated temperature as a solvent for a titanium oxide bronze electrode Mun J, Jung YS, Yim T, Lee HY, Kim HJ, Kim YG, Oh SM |
1075 - 1080 |
The effect of oxygen vacancies on the structure and electrochemistry of LiTi2(PO4)(3) for lithium-ion batteries: A combined experimental and theoretical study Luo JY, Chen LJ, Zhao YJ, He P, Xia YY |
1081 - 1084 |
Influence of the electronic configuration of the central metal ions on catalytic activity of metal phthalocyanines to Li/SOCl2 battery Xu ZW, Zhao JS, Li HJ, Li KZ, Cao ZY, Lu JH |
1085 - 1088 |
All solid-state sheet battery using lithium inorganic solid electrolyte, thio-LISICON Inada T, Kobayashi T, Sonoyama N, Yamada A, Kondo S, Nagao M, Kanno R |
1089 - 1093 |
Low temperature synthesis of flower-like ZnMn2O4 superstructures with enhanced electrochemical lithium storage Xiao LF, Yang YY, Yin J, Li Q, Zhang LZ |
1094 - 1098 |
Fast sol-gel synthesis of LiFePO4/C for high power lithium-ion batteries for hybrid electric vehicle application Beninati S, Damen L, Mastragostino M |
1099 - 1104 |
Electrochemical evaluation of rutile TiO2 nanoparticles as negative electrode for Li-ion batteries Kubiak P, Pfanzelt M, Geserick J, Hormann U, Husing N, Kaiser U, Wohlfahrt-Mehrens M |
1105 - 1112 |
An alternative cooling system to enhance the safety of Li-ion battery packs Kizilel R, Sabbah R, Selman JR, Al-Hallaj S |
1113 - 1119 |
Development of membranes and a study of their interfaces for rechargeable lithium-air battery Kumar J, Kumar B |
1120 - 1127 |
Electrochemical corrosion of Pb-1 wt% Sn and Pb-2.5 wt% Sn alloys for lead-acid battery applications Osorio WR, Peixoto LC, Garcia A |
1128 - 1134 |
High capacity multicomponent hydrogen storage materials: Investigation of the effect of stoichiometry and decomposition conditions on the cycling behaviour of LiBH4-MgH2 Walker GS, Grant DM, Price TC, Yu XB, Legrand V |
1135 - 1141 |
Paper-based, printed zinc-air battery Hilder M, Winther-Jensen B, Clark NB |
1142 - 1149 |
Solid-state hybrid photovoltaic cells with a novel redox polymer and nanostructured inorganic semiconductors Feng ZF, Zhou JZ, Xi YY, Lan BB, Guo HH, Chen HX, Zhang QB, Lin ZH |
1150 - 1155 |
Development of NiMH-based Fuel Cell/Battery (FCB) system: Characterization of Ni(OH)(2)/MnO2 positive electrode for FCB Choi B, Lee S, Fushimi C, Tsutsumi A |
1156 - 1163 |
Thermal behavior of a weatherproof power supply system with built-in nickel-metal hydride batteries developed for stationary use Miyasaka A, Kitano R, Yamashita A, Shodai T |
1164 - 1170 |
Air electrode design for sustained high power operation of Li/air batteries Williford RE, Zhang JG |
1171 - 1179 |
Synthesis, photophysics of two new perylene bisimides and their photovoltaic performances in quasi solid state dye sensitized solar cells Mikroyannidis JA, Stylianakis MM, Roy MS, Suresh P, Sharma GD |
1180 - 1183 |
New iodide-based molten salt systems for high temperature molten salt batteries Fujiwara S, Kato F, Watanabe S, Inaba M, Tasaka A |
1184 - 1193 |
Analysis of electrodes matching for asymmetric electrochemical capacitor Li JL, Gao F |
1194 - 1201 |
Facile approach to prepare loose-packed cobalt hydroxide nano-flakes materials for electrochemical capacitors Kong LB, Lang JW, Liu M, Luo YC, Kang L |
1202 - 1207 |
Carbon nanotube/MnO2 composites synthesized by microwave-assisted method for supercapacitors with high power and energy densities Yan J, Fan ZJ, Wei T, Cheng J, Shao B, Wang K, Song LP, Zhang ML |
1208 - 1212 |
Carbon nanosheets as the electrode material in supercapacitors Zhao X, Tian H, Zhu MY, Tian K, Wang JJ, Kang FY, Outlaw RA |
1213 - 1217 |
Electrospun nickel oxide/polymer fibrous electrodes for electrochemical capacitors and effect of heat treatment process on their performance Hosogai S, Tsutsumi H |
1218 - 1221 |
A novel activated mesocarbon microbead(aMCMB)/Mn3O4 composite for electrochemical capacitors in organic electrolyte Wang HQ, Li ZS, Yang JH, Li QY, Zhong XX |
1222 - 1225 |
A new cheap asymmetric aqueous supercapacitor: Activated carbon//NaMnO2 Qu QT, Shi Y, Tian S, Chen YH, Wu YP, Holze R |
1226 - 1227 |
Modeling of methane fed solid oxide fuel cells: Comparison between proton conducting electrolyte and oxygen ion conducting electrolyte (vol 183, pg 133, 2008) Ni M, Leung DYC, Leung MKH |