595 - 602 |
Effects of coal syngas impurities on anodes of solid oxide fuel cells Cayan FN, Zhi MJ, Pakalapati SR, Celik I, Wu NQ, Gemmen R |
603 - 608 |
The methanol adsorption behavior on platinum/poly(2,5-dimethoxyaniline) composites for application in methanol sensing Chang TK, Chang CC, Wen TC |
609 - 614 |
Synthesis and properties of La0.6Sr0.4CoO3-delta nanopowder Tao YK, Shao J, Wang JX, Wang WG |
615 - 620 |
Supported PtRu on mesoporous carbons for direct methanol fuel cells Arbizzani C, Beninati S, Soavi F, Varzi A, Mastragostino M |
621 - 626 |
Direct ethanol fuel cells using an anion exchange membrane Fujiwara N, Siroma Z, Yamazaki SI, Ioroi T, Senoh H, Yasuda K |
627 - 632 |
Ni-Pt/C as anode electrocatalyst for a direct borohydride fuel cell Geng XY, Zhang HM, Ye W, Ma YW, Zhong HX |
633 - 640 |
Ni and metal aluminate mixtures for solid oxide fuel cell anode supports Kwak BH, Youn HK, Chung JS |
641 - 648 |
Characterization and optimization of La0.8Sr0.2Sc0.1Mn0.9O3-delta-based composite electrodes for intermediate-temperature solid-oxide fuel cells Zheng Y, Ran R, Gu HX, Cai R, Shao ZP |
649 - 655 |
Improvement of (La0.74Bi0.10Sr0.16)MnO3-Bi1.4Er0.6O3 composite cathodes for intermediate-temperature solid oxide fuel cells Li JL, Wang SR, Sun XF, Liu RZ, Ye XF, Wen ZY |
656 - 663 |
Sulfated zirconia nanoparticles as a proton conductor for fuel cell electrodes Tominaka S, Akiyama N, Croce F, Momma T, Scrosati B, Osaka T |
664 - 669 |
Novel Nafion composite membranes with mesoporous silica nanospheres as inorganic fillers Jin YG, Qiao SZ, Zhang L, Xu ZP, Smart S, da Costa JCD, Lu GQ |
670 - 675 |
Synthesis and characterization of LaNiO3-based platinum catalyst for methanol oxidation Balasubramanian A, Karthikeyan N, Giridhar VV |
676 - 684 |
Structure and electrochemical properties of activated polyacrylonitrile based carbon fibers containing carbon nanotubes Jagannathan S, Chae HG, Jain R, Kumar S |
685 - 690 |
NaBH4/H2O2 fuel cells for air independent power systems Luo N, Miley GH, Kim KJ, Burton R, Huang XY |
691 - 697 |
Investigation on scandium-doped manganate La0.8Sr0.2Mn1-xScxO3-delta cathode for intermediate temperaturesolid oxide fuel cells Yue XL, Yan AY, Zhang M, Liu L, Dong YL, Cheng MJ |
698 - 710 |
Aging of LiFePO4 upon exposure to H2O Zaghib K, Dontigny M, Charest P, Labrecque JF, Guerfi A, Kopec M, Mauger A, Gendron F, Julien CM |
711 - 716 |
Carbon nano-fiber interlayer that provides high catalyst utilization in direct methanol fuel cell Okada M, Konta Y, Nakagawa N |
717 - 726 |
New nanostructured carbons based on porous cellulose: Elaboration, pyrolysis and use as platinum nanoparticles substrate for oxygen reduction electrocatalysis Guilminot E, Gavillon R, Chatenet M, Berthon-Fabry S, Rigacci A, Budtova T |
727 - 733 |
Electrocatalysts for bifunctional oxygen/air electrodes Nikolova V, Iliev P, Petrov K, Vitanov T, Zhecheva E, Stoyanova R, Valov I, Stoychev D |
734 - 739 |
Non-destructive transmission electron microscopy study of catalyst degradation under electrochemical treatment Mayrhofer KJJ, Ashton SJ, Meier JC, Wiberg GKH, Hanzlik M, Arenz M |
740 - 746 |
Electrochemical oxidation of highly oriented pyrolytic graphite during potential cycling in sulfuric acid solution Choo HS, Kinumoto T, Nose M, Miyazaki K, Abe T, Ogumi Z |
747 - 753 |
The effect of oxygen reduction on activated carbon electrodes loaded with manganese dioxide catalyst Ominde N, Bartlett N, Yang XQ, Qu DY |
754 - 758 |
SmBaCo2O5+x double-perovskite structure cathode material for intermediate-temperature solid-oxide fuel cells Zhou QJ, He TM, Ji Y |
759 - 764 |
Characterization of warpage behaviour of Gd-doped ceria/NiO-yttria stabilized zirconia bi-layer samples for solid oxide fuel cell application Chang J, Guillon O, Rodel J, Kang SJL |
765 - 775 |
Modelling of coupled electron and mass transport in anisotropic proton-exchange membrane fuel cell electrodes Yang WW, Zhao TS, He YL |
776 - 783 |
Oxidation of methanol on perovskite-type La2-xSrxNiO4 (0 <= x <= 1) film electrodes modified by dispersed nickel in 1 M KOH Singh RN, Singh A, Mishra D, Anindita, Chartier P |
784 - 789 |
Interaction of La0.8Sr0.2MnO3 interlayer with Gd0.1Ce0.9O1.95 electrolyte membrane and Ba0.5Sr0.5Co0.8Fe0.2O3-delta cathode in low-temperature solid oxide fuel cells Yang M, Zhang M, Yan AY, Yue ML, Hou ZF, Dong YL, Cheng MJ |
790 - 800 |
A study of solid oxide fuel cell stack failure by inducing abnormal behavior in a single cell test Lim HT, Virkar AV |
801 - 806 |
A simple approach towards sulfonated multi-walled carbon nanotubes supported by Pd catalysts for methanol electro-oxidation Sun ZP, Zhang XG, Liu RL, Liang YY, Li HL |
807 - 814 |
Nanoparticles of Pt/HxMoO3 electrodeposited in poly (3,4-ethylenedioxythiophene)-poly(styrene sulfonic acid) as the electrocatalyst for methanol oxidation Kuo CW, Sivakumar C, Wen TC |
815 - 821 |
High nitrogen stainless steel as bipolar plates for proton exchange membrane fuel cells Kumagai M, Myung ST, Asaishi R, Katada Y, Yashiro H |
822 - 827 |
Swelling and electro-osmotic properties of cation-exchange membranes with different structures in methanol-water media Barragan VM, Villaluenga JPG, Godino MR, Izquierdo-Gil MA, Ruiz-Bauza C, Seoane B |
828 - 837 |
Optimum operating strategies for liquid-fed direct methanol fuel cells Jeong I, Kim J, Pak S, Nam SW, Moon I |
838 - 845 |
Platinum nanophase electro catalysts and composite electrodes for hydrogen production Petrik LF, Godongwana ZG, Iwuoha EI |
846 - 852 |
Effects and properties of various molecular weights of poly(propylene oxide) oligomers/Nafion (R) acid-base blend membranes for direct methanol fuel cells Ma CCM, Hsiao YH, Lin YF, Yen CY, Liao SH, Weng CC, Yen MY, Hsiao MC, Weng FB |
853 - 856 |
Preliminary study of ethanol electrooxidation in the presence of sulfate on polycrystalline platinum Ferreira RS, Oliveira VR, Reis RGCS, Maia G, Camara GA |
857 - 861 |
Carbon supported platinum-gold alloy catalyst for direct formic acid fuel cells Xu JB, Zhao TS, Liang ZX |
862 - 866 |
Porous Ag-Ce0.8Sm0.2O1.9 cermets as anode materials for intermediate temperature solid oxide fuel cells using CO fuel Wang FY, Jung GB, Su A, Chan SH, Hao X, Chiang YC |
867 - 870 |
X-ray imaging of water distribution in a polymer electrolyte fuel cell Lee SJ, Lim NY, Kim S, Park GG, Kim CS |
871 - 875 |
Synthesis and characterization of nanostructured PtCo-CeOx/C for oxygen reduction reaction Lee KH, Kwon K, Roev V, Yoo DY, Chang H, Seung D |
876 - 880 |
Effect of Sm substitution for Gd on the electrical conductivity of fluorite-type Gd2Zr2O7 Liu ZG, Ouyang JH, Zhou Y, Xia XL |
881 - 885 |
Development of planar, air-breathing, proton exchange membrane fuel cell systems using stabilized sodium borohydride solution Kim JH, Lee JY, Choi KH, Chang H |
886 - 891 |
Support effect of anode catalysts using an organic metal complex for fuel cells Oh J, Yo E, Ono C, Kizuka T, Okada T, Nakamura J |
892 - 894 |
Eight-electron oxidation of borohydride at potentials negative to reversible hydrogen electrode Wang KL, Jiang K, Lu JT, Zhuang L, Cha CS, Hu XH, Chen GZ |
895 - 898 |
Effects of hydrazine addition on gas evolution and performance of the direct borohydride fuel cell Qin HY, Liu ZX, Yin WX, Zhu JK, Li ZP |
899 - 903 |
Homopolymer-like sulfonated phenyl- and diphenyl-poly(arylene ether ketone)s for fuel cell applications Liu B, Kim YS, Hu W, Robertson GP, Pivovar BS, Guiver MD |
904 - 908 |
Surface-modified Nafion membranes with mesoporous SiO2 layers via a facile dip-coating approach for direct methanol fuel cells Lin YH, Li HD, Liu CP, Xing W, Ji XL |
909 - 912 |
A cobalt polypyrrole composite catalyzed cathode for the direct borohydride fuel cell Qin HY, Liu ZX, Yin WX, Zhu JK, Li ZP |
913 - 916 |
Methanol electro-oxidation by a ternary Pt-Ru-Cu catalyst identified by a combinatorial approach Jeon MK, Cooper JS, McGinn PJ |
917 - 921 |
Oxygen ion transference number of doped lanthanum gallate Wang SZ, Wu LL, Gao J, He Q, Liu ML |
922 - 926 |
Electrochemical analysis of hydrogen membrane fuel cells Ito N, Aoyama S, Masui T, Matsumoto S, Matsumoto H, Ishihara T |
927 - 931 |
Investigation of Pt/WC/C catalyst for methanol electro-oxidation and oxygen electro-reduction Jeon MK, Lee KR, Lee WS, Daimon H, Nakahara A, Woo SI |
932 - 936 |
Cathode contact optimization and performance evaluation of intermediate temperature-operating solid oxide fuel cell stacks based on anode-supported planar cells with LaNi0.6Fe0.4O3 cathode Sugita S, Yoshida Y, Orui H, Nozawa K, Arakawa M, Arai H |
937 - 940 |
Low-temperature protonic ceramic membrane fuel cells (PCMFCs) with SrCo0.9Sb0.1O3-delta cubic perovskite cathode Ding HP, Lin B, Jiang YZ, Wang SL, Fang DR, Dong YC, Tao SW, Peng RR, Liu XQ, Meng GY |
941 - 945 |
Pd nanoparticles supported on WO3/C hybrid material as catalyst for oxygen reduction reaction Zhang ZH, Wang XG, Cui ZM, Liu CP, Lu TH, Xing W |
946 - 951 |
Evaluation of nano-structured Ir0.5Mn0.5O2 as a potential cathode for intermediate temperature solid oxide fuel cell Liu BW, Gu YS, Kong LC, Zhang Y |
952 - 960 |
A parameter optimized model of a Proton Exchange Membrane fuel cell including temperature effects Outeiro MT, Chibante R, Carvalho AS, de Almeida AT |
961 - 966 |
Geometrical modeling of microstructure of solid oxide fuel cell composite electrodes Ali A, Wen X, Nandakumar K, Luo BJ, Chuang KT |
967 - 972 |
2 W power source based on air-hydrogen polymer electrolyte membrane fuel cells and water-aluminum hydrogen micro-generator Shkolnikov E, Vlaskin M, Iljukhin A, Zhuk A, Sheindlin A |
973 - 984 |
Analysis and control of a hybrid fuel delivery system for a polymer electrolyte membrane fuel cell He JL, Choe SY, Hong CO |
985 - 992 |
A numerical study of flow crossover between adjacent flow channels in a proton exchange membrane fuel cell with serpentine flow field Shi ZY, Wang X |
993 - 1000 |
Effects of nickel on network structure and thermal properties of a new solid oxide cell seal glass Mahapatra MK, Lu K |
1001 - 1008 |
Effect of aluminizing of Cr-containing ferritic alloys on the seal strength of a novel high-temperature solid oxide fuel cell sealing glass Chou YS, Stevenson JW, Singh P |
1009 - 1014 |
Flow distribution in parallel-channel plate for proton exchange membrane fuel cells Xiao Y, Ming PW, Hou M, Fu YF, Yi BL, Shao ZG |
1015 - 1021 |
In situ analysis on water transport in a direct methanol fuel cell durability test Tian Y, Sun GQ, Mao Q, Wang SL, Liu H, Xin Q |
1022 - 1029 |
Modeling and simulation of a single direct carbon fuel cell Liu QH, Tian Y, Xia C, Thompson LT, Liang B, Li YD |
1030 - 1039 |
The behavior of nickel and silver in a simulated solid oxide fuel cell environment Jackson RW, Pettit FS, Meier GH |
1040 - 1048 |
Effects of operating temperatures on performance and pressure drops for a 256 cm(2) proton exchange membrane fuel cell: An experimental study Yan WM, Wang XD, Mei SS, Peng XF, Guo YF, Su A |
1049 - 1055 |
Stability study of cermet-supported solid oxide fuel cells with bi-layered electrolyte Zhang XE, Gazzarri J, Robertson M, Deces-Petit C, Kesler O |
1056 - 1065 |
Modeling efficiency and water balance in PEM fuel cell systems with liquid fuel processing and hydrogen membranes Pearlman JB, Bhargav A, Shields EB, Jackson GS, Hearn PL |
1066 - 1072 |
Durability studies of unsupported Pt cathodic catalyst with working time of direct methanol fuel cells Wang ZB, Shao YY, Zuo PJ, Wang XP, Yin GP |
1073 - 1078 |
Performance of laboratory polymer electrolyte membrane hydrogen generator with sputtered iridium oxide anode Labou D, Slavcheva E, Schnakenberg U, Neophytides S |
1079 - 1085 |
Nanowire-based three-dimensional hierarchical core/shell heterostructured electrodes for high performance proton exchange membrane fuel cells Saha MS, Li RY, Cai M, Sun XL |
1086 - 1093 |
Fuel-flexible operation of a solid oxide fuel cell with Sr0.8La0.2TiO3 support Pillai MR, Kim I, Bierschenk DM, Barnett SA |
1094 - 1100 |
Simulation of nanostructured electrodes for polymer electrolyte membrane fuel cells Rao SM, Xing YC |
1101 - 1106 |
Distinguishing between apparent and authentic conductivity of protonic ceramic electrolytes using differential resistance analysis applied to conductivity measurements Melnik J, Sanger AR, Tsyganok A, Luo JL, Chuang KT |
1107 - 1114 |
Energy and exergy analyses of a hybrid molten carbonate fuel cell system Rashidi R, Dincer I, Berg R |
1115 - 1121 |
Simulation and fabrication of micro-scaled flow channels for metallic bipolar plates by the electrochemical micro-machining process Lee SJ, Lee CY, Yang KT, Kuan FH, Lai PH |
1122 - 1130 |
Anode gas recirculation behavior of a fuel ejector in hybrid solid oxide fuel cell systems: Performance evaluation in three operational modes Zhu YH, Cai WJ, Li YZ, Wen CY |
1131 - 1140 |
A transient two-phase mass transport model for liquid feed direct methanol fuel cells Yang WW, Zhao TS |
1141 - 1146 |
Identification problems and analysis of the limit current in fuel cells Costa P, Bosio B |
1147 - 1153 |
Liquid water transport between graphite paper and a solid surface Bazylak A, Heinrich J, Djilali N, Sinton D |
1154 - 1161 |
A novel ribbed cathode polar plate design in piezoelectric proton exchange membrane fuel cells Ma HK, Huang SH, Kuo YZ |
1162 - 1167 |
Thermodynamic analysis of direct internal reforming of methane and butane in proton and oxygen conducting fuel cells Biesheuvel PM, Geerlings JJC |
1168 - 1178 |
Continuum-level solid oxide electrode constriction resistance effects Nelson GJ, Haynes CL |
1179 - 1192 |
A segmented model for studying water transport in a PEMFC Chen YS, Peng H |
1193 - 1200 |
Predicting Young's modulus of glass/ceramic sealant for solid oxide fuel cell considering the combined effects of aging, micro-voids and self-healing Liu WN, Sun X, Khaleel MA |
1201 - 1208 |
Modeling of a 5-cell direct methanol fuel cell using adaptive-network-based fuzzy inference systems Wang RR, Qi L, Xie XF, Ding QQ, Li CW, Ma CCM |
1209 - 1217 |
The effect of dissolution, migration and precipitation of platinum in Nafion (R)-based membrane electrode assemblies during fuel cell operation at high potential Peron J, Nedellec Y, Jones DJ, Roziere J |
1218 - 1224 |
Neodymium-deficient nickelate oxide Nd1.95NiO4+delta as cathode material for anode-supported intermediate temperature solid oxide fuel cells Lalanne C, Prosperi G, Bassat JM, Mauvy F, Fourcade S, Stevens P, Zahid M, Diethelm S, Van Herle J, Grenier JC |
1225 - 1232 |
Preparation and properties of carbon nanotube/polypropylene nanocomposite bipolar plates for polymer electrolyte membrane fuel cells Liao SH, Yen CY, Weng CC, Lin YF, Ma CCM, Yang CH, Tsai MC, Yen MY, Hsiao MC, Lee SJ, Xie XF, Hsiao YH |
1233 - 1246 |
A two-dimensional two-phase mass transport model for direct methanol fuel cells adopting a modified agglomerate approach Miao Z, He YL, Li XL, Zou JQ |
1247 - 1251 |
Low-temperature solid oxide fuel cells with La1-xSrxMnO3 as the cathodes Tian RF, Fan J, Liu Y, Xia CR |
1252 - 1256 |
Contact mechanics approach to determine contact surface area between bipolar plates and current collector in proton exchange membrane fuel cells Barber M, Sun TS, Petrach E, Wang X, Zou Q |
1257 - 1261 |
A study on performance stability of the passive direct borohydride fuel cell Liu BH, Li ZP, Suda S |
1262 - 1266 |
Nickel-Zirconia cermet processing by mechanical alloying for solid oxide fuel cell anodes Restivo TAG, de Mello-Castanho SRH |
1267 - 1271 |
Measurement of the water transport rate in a proton exchange membrane fuel cell and the influence of the gas diffusion layer Dai W, Wang HJ, Yuan XZ, Martin JJ, Luo ZP, Pan M |
1272 - 1272 |
Comment on "A strategy of estimating fuel concentration in a direct liquid-feed fuel cell system" [YJ Chiu, HC Lien, journal of Power Sources 159 (2006) 1162-1168] Wang RR, Xie XF, Li CW |
1273 - 1283 |
Modeling, control and simulation of an autonomous wind turbine/photovoltaic/fuel cell/ultra-capacitor hybrid power system Onar OC, Uzunoglu M, Alam MS |
1284 - 1292 |
Analysis of a novel autonomous marine hybrid power generation/energy storage system with a high-voltage direct current link Wang L, Lee DJ, Lee WJ, Chen Z |
1293 - 1304 |
Hydrogen for fuel cells from ethanol by steam-reforming, partial-oxidation and combined auto-thermal reforming: A thermodynamic analysis Rabenstein G, Hacker V |
1305 - 1310 |
Integrated micro-power source based on a micro-silicon fuel cell and a micro electromechanical system hydrogen generator Zhu L, Lin KY, Morgan RD, Swaminathan VV, Kim HS, Gurau B, Kim D, Bae B, Masel RI, Shannon MA |
1311 - 1314 |
Non-alkaline glass-MgO composites for SOFC sealant Sakuragi S, Funahashi Y, Suzuki T, Fujishiro Y, Awano M |
1315 - 1321 |
FeCr gas diffusion layer with surface modification for fuel processing in direct-methane solid oxide fuel cells Huang TJ, Huang MC |
1322 - 1327 |
Multi-cell hydrogen storage devices with extra volumetric capacity Du R, Zhang R, Xu G |
1328 - 1333 |
Analysis of self-sustaining recuperative solid oxide electrolysis systems Gopalan S, Mosleh M, Hartvigsen JJ, McConnell RD |
1334 - 1339 |
Hydrogen generation from hydrides in millimeter scale reactors for micro proton exchange membrane fuel cell applications Zhu L, Kim D, Kim H, Masel RI, Shannon MA |
1340 - 1347 |
A self-catalytic mixed-conducting membrane reactor for effective production of hydrogen from methane Dong XL, Liu ZK, Jin WQ, Xu NP |
1348 - 1353 |
Semiempirical model based on thermodynamic principles for determining 6 kW proton exchange membrane electrolyzer stack characteristics Dale NV, Mann MD, Salehfar H |
1354 - 1358 |
The effect of heating rate on the reversible hydrogen storage based on reactions of Li3AlH6 with LiNH2 Lu J, Fang ZZ, Choi YJ, Sohn HY, Kim C, Bowman RC, Hwang SJ |
1359 - 1366 |
Surface reactions and performance of non-aqueous electrolytes with lithium metal anodes Yang L, Smith C, Patrissi C, Schumacher CR, Lucht BL |
1367 - 1373 |
State-of-charge and capacity estimation of lithium-ion battery using a new open-circuit voltage versus state-of-charge Lee S, Kim J, Lee J, Cho BH |
1374 - 1379 |
Effects of vanadium- and iron-doping on crystal morphology and electrochemical properties of 1D nanostructured manganese oxides Yoo HN, Park DH, Hwang SJ |
1380 - 1385 |
Quantitative studies on the thermal stability of the interface between graphite electrode and electrolyte Doi T, Zhao L, Zhou M, Okada S, Yamaki J |
1386 - 1391 |
Electrochemical behaviour of tin borophosphate negative electrodes for energy storage systems Shenouda AY, Liu HK |
1392 - 1397 |
Lithium anode for lithium-air secondary batteries Imanishi N, Hasegawa S, Zhang T, Hirano A, Takeda Y, Yamamoto O |
1398 - 1407 |
Thermodynamic model development for lithium intercalation electrodes Karthikeyan DK, Sikha G, White RE |
1408 - 1414 |
Preparation of Li(Ni1/3Co1/3Mn1/3)O-2 by spherical Ni1/3Mn1/3Co1/3OOH at a low temperature Chang ZR, Chen ZJ, Wu F, Tang HW, Zhu ZH, Yuan XZ, Wang HJ |
1415 - 1419 |
A direct current pulse technique to enhance conductivity of heterogeneous electrolytes Gupta N, Thokchom JS, Kumar B |
1420 - 1424 |
Electrochemical fabrication of anatase TiO2 nanostructure as an anode material for aqueous lithium-ion batteries Wu MS, Wang MJ, Jow JJ, Yang WD, Hsieh CY, Tsai HM |
1425 - 1428 |
Alkylphosphate-based nonflammable gel electrolyte for LiMn2O4 positive electrode in lithium-ion battery Yoshimoto N, Gotoh D, Egashira M, Morita M |
1429 - 1433 |
Influence of Co substitution for Ni and Mn on the structural and electrochemical characteristics of LiNi0.5Mn1.5O4 Ito A, Li D, Lee Y, Kobayakawa K, Sato Y |
1434 - 1438 |
Poly[3,4-(ethylenedithio)thiophene]: High specific capacity cathode active material for lithium rechargeable batteries Tang J, Song ZP, Shan N, Zhan LZ, Zhang JY, Zhan H, Zhou YH, Zhan CM |
1439 - 1443 |
Effect of nanosized silica in poly(methyl methacrylate)-lithium bis(trifluoromethanesulfonyl)imide based polymer electrolytes Ramesh S, Lu SC |
1444 - 1453 |
Cycle life evaluation of 3 Ah LixMn2O4-based lithium-ion secondary cells for low-earth-orbit satellites I. Full cell results Brown S, Ogawa K, Kumeuchi Y, Enomoto S, Uno M, Saito H, Sone Y, Abraham D, Lindbergh G |
1454 - 1464 |
Cycle life evaluation of 3 Ah LixMn2O4-based lithium-ion secondary cells for low-earth-orbit satellites II. Harvested electrode examination Brown S, Ogawa K, Kumeuchi Y, Enomoto S, Uno M, Saito H, Sone Y, Abraham D, Lindbergh G |
1465 - 1470 |
Determination of new time-temperature-transformation diagrams for lead-calcium alloys Rossi F, Lambertin M, Delfaut-Durut L, Maitre A, Viiasi M |
1471 - 1477 |
Hot corrosion resistance of a Pb-Sb alloy for lead acid battery grids Osorio WR, Aoki CSC, Garcia A |
1478 - 1483 |
The intelligent automotive battery, "CYBOX (R)" Yamada K, Yamada Y, Otsu K, Machiyama Y, Emori A, Okoshi T |
1484 - 1491 |
Lead acid batteries simulation including experimental validation Achaibou N, Haddadi M, Malek A |
1492 - 1498 |
Improved stability of quasi-solid-state dye-sensitized solar cell based on poly (ethylene oxide)-poly (vinylidene fluoride) polymer-blend electrolytes Yang Y, Zhou CH, Xu S, Hu H, Chen BL, Zhang J, Wu SJ, Liu W, Zhao XZ |
1499 - 1504 |
Electrochemical characterisation of activated carbon particles used in redox flow battery electrodes Radford GJW, Cox J, Wills RGA, Walsh FC |
1505 - 1508 |
A novel photoelectrochromic device with dual application based on poly(3,4-alkylenedioxythiophene) thin film and an organic dye Hsu CY, Lee KM, Huang JH, Thomas KRJ, Lin JT, Ho KC |
1509 - 1513 |
A high voltage magnesium battery based on H2SO4-doped (PVA)(0.7)(NaBr)(0.3) solid polymer electrolyte Sheha E, El-Mansy MK |
1514 - 1518 |
The destabilization mechanism and de/re-hydrogenation kinetics of MgH2-LiAlH4 hydrogen storage system Zhang Y, Tian QF, Liu SS, Sun LX |
1519 - 1523 |
Study on microstructure and electrochemical performance of La0.7Mg0.3(Ni0.9Co0.1)(x) hydrogen storage alloys Cheng LF, Wang RB, Pu ZH, Li ZL, He DN, Xia BJ |
1524 - 1532 |
A fully integrated microbattery for an implantable microelectromechanical system Albano F, Lin YS, Blaauw D, Sylvester DM, Wise KD, Sastry AM |
1533 - 1543 |
Wavelet-transform-based power management of hybrid vehicles with multiple on-board energy sources including fuel cell, battery and ultracapacitor Zhang X, Mi CC, Masrur A, Daniszewski D |
1544 - 1549 |
Exfoliated graphite-ruthenium oxide composite electrodes for electrochemical supercapacitors Mitra S, Lokesh KS, Sampath S |
1550 - 1556 |
Annealed Mn-Fe binary oxides for supercapacitor applications Lee MT, Chang JK, Hsieh YT, Tsai WT |
1557 - 1562 |
A competitive candidate material for aqueous supercapacitors: High surface-area graphite Li HQ, Wang YG, Wang CX, Xia YY |
1563 - 1568 |
Hierarchical porous nickel oxide and carbon as electrode materials for asymmetric supercapacitor Wang DW, Li F, Cheng HM |
1569 - 1574 |
Nickel foam-based manganese dioxide-carbon nanotube composite electrodes for electrochemical supercapacitors Li J, Yang QM, Zhitornirsky I |
1575 - 1579 |
Safe, high-energy supercapacitors based on solvent-free ionic liquid electrolytes Arbizzani C, Biso M, Cericola D, Lazzari M, Soavi F, Mastragostino M |
1580 - 1584 |
Vertically aligned double-walled carbon nanotube electrode prepared by transfer methodology for electric double layer capacitor Honda Y, Takeshige M, Shiozaki H, Kitamura T, Yoshikawa K, Chakrabarti S, Suekane O, Pan LJ, Nakayama Y, Yamagata M, Ishikawa M |
1585 - 1588 |
A neat ionic liquid electrolyte based on FSI anion for electric double layer capacitor Handa N, Sugimoto T, Yamagata M, Kikuta M, Kono M, Ishikawa M |
1589 - 1593 |
Composite electrode composed of bimodal porous carbon and polypyrrole for electrochemical capacitors Woo SW, Dokko K, Kanamura K |
1594 - 1597 |
Anodic deposition of porous vanadium oxide network with high power characteristics for pseudocapacitors Hu CC, Huang CM, Chang KH |
1598 - 1604 |
Hydrogen in thin Pd-based layers deposited on reticulated vitreous carbon-A new system for electrochemical capacitors Lukaszewski M, Zurowski A, Czerwinski A |
1605 - 1612 |
A photo-physical and electrochemical impedance spectroscopy study on the quasi-solid state dye-sensitized solar cells based on poly(vinylidene fluoride-co-hexafluoropropylene) Lee KM, Suryanarayanan V, Ho KC |