1 - 9 |
Nb-doped TiO2/carbon composite supports synthesized by ultrasonic spray pyrolysis for proton exchange membrane (PEM) fuel cell catalysts Senevirathne K, Neburchilov V, Alzate V, Baker R, Neagu R, Zhang JJ, Campbell S, Ye SY |
10 - 14 |
Nonhumidified fuel cell using N-ethyl-N-methylpyrrolidinium fluorohydrogenate ionic liquid-polymer composite membranes Kiatkittikul P, Nohira T, Hagiwara R |
15 - 19 |
A novel cobalt-free layered perovskite-type GdBaFeNiO5+delta cathode material for proton-conducting intermediate temperature solid oxide fuel cells Yang ZJ, Ding ZL, Xiao J, Zhang HM, Ma GL, Zhou ZF |
20 - 30 |
Examination of the electroactive composites containing cobalt nanoclusters and nitrogen-doped nanostructured carbon as electrocatalysts for oxygen reduction reaction Pacula A, Ikeda K, Masuda T, Uosaki K |
31 - 41 |
Proton exchange membrane fuel cells cold startup global strategy for fuel cell plug-in hybrid electric vehicle Henao N, Kelouwani S, Agbossou K, Dube Y |
42 - 46 |
Study on surface topography of 446M stainless steel as a bipolar plate on interfacial contact resistance of polymer electrolyte membrane fuel cell Kim KM, Kim SN, Kim JH, Lee YY, Kim KY |
47 - 53 |
Synthesis and electrochemical performance of LiV3O8/polyaniline as cathode material for the lithium battery Gao XW, Wang JZ, Chou SL, Liu HK |
54 - 64 |
Investigation of degradation mechanisms of a high-temperature polymer-electrolyte-membrane fuel cell stack by electrochemical impedance spectroscopy Kim JR, Yi JS, Song TW |
65 - 73 |
A comparative study of ORR at the Pt electrode in ammonium ion-contaminated H2SO4 and HClO4 solutions Rahman MR, Awada MI, Kitamura F, Okajima T, Ohsaka T |
74 - 78 |
Impact of direct butane microtubular solid oxide fuel cells Sumi H, Yamaguchi T, Hamamoto K, Suzuki T, Fujishiro Y |
79 - 83 |
Enhancement of proton exchange membrane fuel cell performance by doping microporous layers of gas diffusion layers with multiwall carbon nanotubes Schweiss R, Steeb M, Wilde PM, Schubert T |
84 - 88 |
Facile synthesis of nanocrystalline Li4Ti5O12 by microemulsion and its application as anode material for Li-ion batteries Liu GY, Wang HY, Liu GQ, Yang ZZ, Jin B, Jiang QC |
89 - 94 |
Power electronic converters for microbial fuel cell energy extraction: Effects of inductance, duty ratio, and switching frequency Wang HM, Ren ZY, Park JD |
95 - 102 |
Two kinds of graphene-based composites for photoanode applying in dye-sensitized solar cell Tang B, Hu GX |
103 - 107 |
Nanoparticle Li2FeSiO4 as anode material for lithium-ion batteries Xu Y, Li YJ, Liu SQ, Li HL, Liu YN |
108 - 113 |
The role of a TiCl4 treatment on the performance of CdS quantum-dot-sensitized solar cells Kim J, Choi H, Nahm C, Kim C, Nam S, Kang S, Jung DR, Kim JI, Kang J, Park B |
114 - 121 |
Electronic integration of fuel cell and battery system in novel hybrid vehicle Fisher P, Jostins J, Hilmansen S, Kendall K |
122 - 129 |
Sol-gel synthesis of Li2CoPO4F/C nanocomposite as a high power cathode material for lithium ion batteries Wu XB, Gong ZL, Tan S, Yang Y |
130 - 137 |
Electroless Ni-Cu-P/nano-graphite composite coatings for bipolar plates of proton exchange membrane fuel cells Lee CK |
138 - 146 |
Novel mixed matrix membranes for sulfur removal and for fuel cell applications Lin LG, Wang AD, Zhang LH, Dong MM, Zhang YZ |
147 - 152 |
Coke-free direct formic acid solid oxide fuel cells operating at intermediate temperatures Chen YB, Su C, Zheng T, Shao ZP |
153 - 159 |
Conveniently fabricated heterojunction ZnO/TiO2 electrodes using TiO2 nanotube arrays for dye-sensitized solar cells Liu R, Yang WD, Qiang LS, Liu HY |
160 - 168 |
Carbon fabric-aligned carbon nanotube/MnO2/conducting polymers ternary composite electrodes with high utilization and mass loading of MnO2 for super-capacitors Lv P, Feng YY, Li Y, Feng W |
169 - 172 |
A divalent quaternary alkyl ammonium salt as the electrolyte for high-energy electric double-layer capacitors Zheng C, Yoshio M, Qi L, Wang HY |
173 - 179 |
Influence of heat-treatment of Ketjen Black on the oxygen reduction reaction of Pt/C catalysts Inoue H, Hosoya K, Kannari N, Ozaki J |
180 - 184 |
New insights into the silicon-based electrode's irreversibility along cycle life through simple gravimetric method Mazouzi D, Delpuech N, Oumellal Y, Gauthier M, Cerbelaud M, Gaubicher J, Dupre N, Moreau P, Guyomard D, Roue L, Lestriez B |
185 - 192 |
Carbon felt supported carbon nanotubes catalysts composite electrode for vanadium redox flow battery application Wei GJ, Jia CK, Liu JG, Yan CW |
193 - 198 |
Novel ternary molten salt electrolytes for intermediate-temperature sodium/nickel chloride batteries Li GS, Lu XC, Coyle CA, Kim JY, Lemmon JP, Sprenkle VL, Yang ZG |
199 - 204 |
Electrical properties of bipolar plate and gas diffusion layer in PEFC Miyazawa A, Himeno T, Nishikata A |
205 - 210 |
The effect of ammonia upon the electrocatalysis of hydrogen oxidation and oxygen reduction on polycrystalline platinum Verdaguer-Casadevall A, Hernandez-Fernandez P, Stephens IEL, Chorkendorff I, Dahl S |
211 - 216 |
Gold-Palladium nanoparticles supported by mesoporous beta-MnO2 air electrode for rechargeable Li-Air battery Thapa AK, Shin TH, Ida S, Sumanasekera GU, Sunkara MK, Ishihara T |
217 - 227 |
Long term study of Cr evaporation and high temperature corrosion behaviour of Co coated ferritic steel for solid oxide fuel cell interconnects Froitzheim J, Canovic S, Nikumaa M, Sachitanand R, Johansson LG, Svensson JE |
228 - 235 |
Synthesis and electrochemical performance of spinel-type LiMn2O4 using gamma-MnOOH rods as self-template for lithium ion battery He L, Zhang SC, Wei X, Du ZJ, Liu GR, Xing YL |
236 - 242 |
Electroactive polymer-based electrochemical capacitors using poly(benzimidazo-benzophenanthroline) and its pyridine derivative poly(4-aza-benzimidazo-benzophenanthroline) as cathode materials with ionic liquid electrolyte Stenger-Smith JD, Lai WW, Irvin DJ, Yandek GR, Irvin JA |
243 - 252 |
Active pore space utilization in nanoporous carbon-based supercapacitors: Effects of conductivity and pore accessibility Seredych M, Koscinski M, Sliwinska-Bartkowiak M, Bandosz TJ |
253 - 263 |
Recent advances in the development of Li-air batteries Capsoni D, Bini M, Ferrari S, Quartarone E, Mustarelli P |
264 - 268 |
Enhanced electrochemical performance of LiFePO4 cathode with in-situ chemical vapor deposition synthesized carbon nanotubes as conductor Sun XR, Li JJ, Shi CS, Wang ZY, Liu EZ, He CN, Du XW, Zhao NQ |
269 - 279 |
Electrochemical performance of microbial fuel cells based on disulfonated poly(arylene ether sulfone) membranes Choi TH, Won YB, Lee JW, Shin DW, Lee YM, Kim M, Park HB |
280 - 285 |
Electrochemical performance of spin coated dense BaZr0.80Y0.16Zn0.04O3-delta membranes Luisetto I, Licoccia S, D'Epifanio A, Sanson A, Mercadelli E, Di Bartolomeo E |
286 - 291 |
Hydrometallurgical route to recover nickel, cobalt and cadmium from spent Ni-Cd batteries Fernandes A, Afonso JC, Dutra AJB |
292 - 297 |
A dual-chambered microbial fuel cell with Ti/nano-TiO2/Pd nano-structure cathode Hosseini MG, Ahadzadeh I |
298 - 305 |
Electrochemical capacitance of mesoporous tungsten oxynitride in aqueous electrolytes Kartachova O, Glushenkov AM, Chen YH, Zhang HZ, Dai XJJ, Chen Y |
306 - 316 |
Electrocatalysis of oxygen reduction reaction on polyaniline-derived nitrogen-doped carbon nanoparticle surfaces in alkaline media Gavrilov N, Pasti IA, Mitric M, Travas-Sejdic J, Ciric-Marjanovic G, Mentus SV |
317 - 323 |
Hydrothermal synthesis of morphology-controlled LiFePO4 cathode material for lithium-ion batteries Pei B, Yao HX, Zhang WX, Yang ZH |
324 - 330 |
Interfacial modification of La0.80Sr0.20MnO3-delta-Er0.4Bi0.6O3 cathodes for high performance lower temperature solid oxide fuel cells Lee KT, Jung DW, Yoon HS, Lidie AA, Camaratta MA, Wachsman ED |
331 - 341 |
The analyses of the start-up process of a planar, anode-supported solid oxide fuel cell using three different start-up procedures Chen MH, Jiang TL |
342 - 347 |
Synthesis of cage-like LiFePO4/C microspheres for high performance lithium ion batteries Deng HG, Jin SL, Zhan L, Wang YL, Qiao WM, Ling LC |
348 - 353 |
A review of the performance and analysis of proton exchange membrane fuel cell membrane electrode assemblies Liu CY, Sung CC |
354 - 359 |
Improved Co-substituted, LiNi0.5-xCo2xMn1.5-xO4 lithium ion battery cathode materials Jang MW, Jung HG, Scrosati B, Sun YK |
360 - 372 |
Modeling and short circuit detection of 18650 Li-ion cells under mechanical abuse conditions Sahraei E, Campbell J, Wierzbicki T |
373 - 376 |
Scanning probe imaging of surface ion conductance in an anion exchange membrane He QG, Ren XM |
377 - 382 |
Electrochemical properties of ceria-based intermediate temperature solid oxide fuel cell using microwave heat-treated La0.1Sr0.9Co0.8Fe0.2O3-delta as a cathode Choi MB, Lee KT, Yoon HS, Jeon SY, Wachsman ED, Song SJ |
383 - 390 |
Numerical study on the cathode flooding of direct humidified proton exchange membrane fuel cell Hirata H, Shimotori S, Aoki T |
391 - 398 |
CoO nanocrystals as a highly active catalyst for the generation of hydrogen from hydrolysis of sodium borohydride Lu AL, Chen YZ, Jin JR, Yue GH, Peng DL |
399 - 404 |
Electrocatalytic oxidation of methanol at tantalum oxide-modified Pt electrodes Masud J, Alam MT, Awaludin Z, El-Deab MS, Okajima T, Ohsaka T |
405 - 412 |
Microstructural investigation of LixNi1/3Mn1/3Co1/3O2 (x <= 1) and its aged products via magnetic and diffraction study Mohanty D, Gabrisch H |
413 - 421 |
Interactions between organic additives and active powders in water-based lithium iron phosphate electrode slurries Li CC, Lin YS |
422 - 429 |
Synthesis of layered-layered xLi(2)MnO(3)center dot(1-x)LiMO2 (M = Mn, Ni, Co) nanocomposite electrodes materials by mechanochemical process Kim S, Kim C, Noh JK, Yu S, Kim SJ, Chang W, Choi WC, Chung KY, Cho BW |
430 - 448 |
One-dimensional physics-based reduced-order model of lithium-ion dynamics Lee JL, Chemistruck A, Plett GL |
449 - 454 |
A robust fuel cell cathode catalyst assembled with nitrogen-doped carbon nanohorn and platinum nanoclusters Zhang LW, Zheng N, Gao A, Zhu CM, Wang ZY, Wang Y, Shi ZJ, Liu Y |