1 - 8 |
Long-term evaluation of solid oxide fuel cell candidate materials in a 3-cell generic short stack fixture, part I: Test fixture, sealing, and electrochemical performance Chou YS, Stevenson JW, Choi JP |
9 - 15 |
Experimental study of a passive thermal management system for high-powered lithium ion batteries using porous metal foam saturated with phase change materials Li WQ, Qu ZG, He YL, Tao YB |
16 - 23 |
Effect of thermal treatment on TiO2 nanorod electrodes prepared by the solvothermal method for dye-sensitized solar cells: Surface reconfiguration and improved electron transport Zhao JY, Yao JX, Zhang YZ, Guli MN, Xiao L |
24 - 28 |
MWCNT-supported phthalocyanine cobalt as air-breathing cathodic catalyst in glucose/O-2 fuel cells Elouarzaki K, Haddad R, Holzinger M, Le Goff A, Thery J, Cosnier S |
29 - 36 |
An experimental study of lithium ion battery thermal management using flexible hydrogel films Zhao R, Zhang SJ, Gu JJ, Liu J, Carkner S, Lanoue E |
37 - 42 |
Graphene/Au composite paper as flexible current collector to improve electrochemical performances of CFx cathode Yang WJ, Dai Y, Cai SD, Zheng Y, Wen W, Wang K, Feng Y, Xie JY |
43 - 51 |
Investigation on C-TiO2 nanotubes composite as Pt catalyst support for methanol electrooxidation Sui XL, Wang ZB, Yang M, Huo L, Gu DM, Yin GP |
52 - 58 |
Co3O4 mesoporous nanostructures@graphene membrane as an integrated anode for long-life lithium-ion batteries Li L, Zhou GM, Shan XY, Pei SF, Li F, Cheng HM |
59 - 64 |
Effect of ozone on the performance of solid oxide fuel cell with Sm0.5Sr0.5CoO3 cathode Chen ZY, Wang LJ, Gong YD, Tang D, Li FS, Chou KC |
65 - 69 |
The inherent kinetic electrochemical reduction of oxygen into H2O on FeN4-carbon: A density functional theory study Zhang J, Wang ZJ, Zhu ZP |
70 - 75 |
Electronspun nanofiber network anode for a passive direct methanol fuel cell Chen P, Wu HJ, Yuan T, Zou ZQ, Zhang HF, Zheng JW, Yang H |
76 - 84 |
Experimental identification of the active sites in pyrolyzed carbon-supported cobalt-polypyrrole-4-toluenesulfinic acid as electrocatalysts for oxygen reduction reaction Sha HD, Yuan XX, Li L, Ma Z, Ma ZF, Zhang L, Zhang JJ |
85 - 100 |
Extended operating range for reduced-order model of lithium-ion cells Lee JL, Aldrich LL, Stetzel KD, Plett GL |
101 - 107 |
Cross-linked polyelectrolyte for direct methanol fuel cells applications based on a novel sulfonated cross-linker Li MY, Zhang G, Xu S, Zhao CJ, Han MM, Zhang LY, Jiang H, Liu ZG, Na H |
108 - 115 |
Using short-time creep relaxation effect to decrease the residual stress in the bonded compliant seal of planar solid oxide fuel cell - A finite element simulation Zhang YC, Jiang WC, Tu ST, Wen JF, Woo W |
116 - 124 |
Laser-printing and femtosecond-laser structuring of LiMn2O4 composite cathodes for Li-ion microbatteries Proll J, Kim H, Pique A, Seifert HJ, Pfleging W |
125 - 129 |
High-performance anode based on porous Co3O4 nanodiscs Pan AQ, Wang YP, Xu W, Nie ZW, Liang SQ, Nie ZM, Wang CM, Cao GZ, Zhang JG |
130 - 143 |
An electrochemical-thermal model based on dynamic responses for lithium iron phosphate battery Li J, Cheng Y, Jia M, Tang YW, Lin Y, Zhang ZA, Liu YX |
144 - 150 |
Theoretical model for surface diffusion driven Ni-particle agglomeration in anode of solid oxide fuel cell Gao S, Li JY, Lin ZJ |
151 - 156 |
Parametric optimization of thermoelectric elements footprint for maximum power generation Rezania A, Rosendahl LA, Yin H |
157 - 162 |
One-pot synthesis of PtNi alloy nanoflowers supported on multi-walled carbon nanotubes with superior electrocatalytic activity for the oxygen reduction Guo DJ, Cui SK, Cheng D, Zhang P, Jiang L, Zhang CC |
163 - 169 |
The composite sphere of manganese oxide and carbon nanotubes as a prospective anode material for lithium-ion batteries Sun XF, Xu YL, Ding P, Chen GG, Zheng XY, Zhang R, Li L |
170 - 178 |
A facile approach to fabricate flexible all-solid-state supercapacitors based on MnFe2O4/graphene hybrids Cai WH, Lai T, Dai WL, Ye JS |
179 - 186 |
The effect of fuel type on the performance of a direct Carbon fuel cell with molten alkaline electrolyte Kacprzak A, Kobylecki R, Wlodarczyk R, Bis Z |
187 - 196 |
A novel air electrode design: A key to high rate capability and long life span Xu L, Ma J, Li BH, Kang FY |
197 - 203 |
Understanding structural changes in NMC Li-ion cells by in situ neutron diffraction Dolotko O, Senyshyn A, Muhlbauer MJ, Nikolowski K, Ehrenberg H |
204 - 218 |
A review of electrolytes for lithium-sulphur batteries Scheers J, Fantini S, Johansson P |
219 - 222 |
Electrochemical evaluation of carbon nanotubes and carbon black for the cathode of Li-air batteries Fuentes RE, Colon-Mercado HR, Fox EB |
223 - 229 |
High performance anode based on a partially fluorinated sulfonated polyether for direct methanol fuel cells operating at 130 degrees C Mack F, Gogel V, Jorissen L, Kerres J |
230 - 234 |
Humic acids as pseudocapacitive electrolyte additive for electrochemical double layer capacitors Wasinski K, Walkowiak M, Lota G |
235 - 241 |
Ultrathin pre-lithiated V6O13 nanosheet cathodes with enhanced electrical transport and cyclability Tian XC, Xu X, He L, Wei QL, Yan MY, Xu L, Zhao YL, Yang CC, Mai LQ |
242 - 250 |
Kinetics of oxygen reduction reaction on three different Pt surfaces of Pt/C catalyst analyzed by rotating ring-disk electrode in acidic solution Zhang L, Li H, Zhang JJ |
251 - 259 |
Electrodeposition and isothermal aging of Co and Mn layers on stainless steel for interconnectors: Initial stages of spinel phase formation Pinto R, Carmezim MJ, Montemor MF |
260 - 265 |
Electrocatalytic activity of ZnS nanoparticles in direct ethanol fuel cells Bredol M, Kaczmarek M, Wiemhofer HD |
266 - 273 |
Leakage current and commutation losses reduction in electric drives for Hybrid Electric Vehicle Miliani E |
274 - 282 |
Microscopic model for fracture of crystalline Si nanopillars during lithiation Ryu I, Lee SW, Gao HJ, Cui Y, Nix WD |
283 - 293 |
Load shift potential of electric vehicles in Europe Babrowski S, Heinrichs H, Jochem P, Fichtner W |
294 - 301 |
Thermal runaway features of large format prismatic lithium ion battery using extended volume accelerating rate calorimetry Feng XN, Fang M, He XM, Ouyang MG, Lu LG, Wang H, Zhang MX |
302 - 307 |
Evaluation of proton conducting BCY10-based anode supported cells by co-pressing method: Up-scaling, performances and durability Dailly J, Marrony M, Taillades G, Taillades-Jacquin M, Grimaud A, Mauvy F, Louradour E, Salmi J |
308 - 317 |
Effect of the deposition temperature on the electrochemical properties of La0.6Sr0.4Co0.8Fe0.2O3-delta cathode prepared by conventional spray-pyrolysis Marrero-Lopez D, Romero R, Martin F, Ramos-Barrado JR |
318 - 324 |
Ball-milling preparation of one-dimensional Co-carbon nanotube and Co-carbon nanofiber core/shell nanocomposites with high electrochemical hydrogen storage ability Chang C, Gao P, Bao D, Wang LQ, Wang Y, Chen YJ, Zhou XM, Sun SC, Li GB, Yang PP |
325 - 334 |
Anion exchange membrane prepared from simultaneous polymerization and quaternization of 4-vinyl pyridine for non-aqueous vanadium redox flow battery applications Maurya S, Shin SH, Sung KW, Moon SH |
335 - 340 |
Electrospun nanofiber of hybrid manganese oxides for supercapacitor: Relevance to mixed inorganic interfaces Lee E, Lee T, Kim BS |
341 - 354 |
Optimized efficiency of all-electric ships by dc hybrid power systems Zahedi B, Norum LE, Ludvigsen KB |
355 - 359 |
Boron doping at P-site to improve electrochemical performance of LiMnPO4 as cathode for lithium ion battery Hu CL, Yi HH, Wang FX, Xiao SY, Wu YP, Wang D, He DL |
360 - 367 |
A multi scale multi-dimensional thermo electrochemical modelling of high capacity lithium-ion cells Tourani A, White P, Ivey P |
368 - 376 |
Improved extended Kalman filter for state of charge estimation of battery pack Sepasi S, Ghorbani R, Liaw BY |
377 - 386 |
Thermal shock resistance and failure probability analysis on solid oxide electrolyte direct flame fuel cells Wang YQ, Shi YX, Yu XK, Cai NS |
387 - 393 |
Enhanced utilization and durability of Pt nanoparticles supported on sulfonated carbon nanotubes Guo L, Chen SG, Wei ZD |
394 - 403 |
Cobalt and molybdenum activated electrodes in foam based alkaline electrolysis cells at 150-250 degrees C and 40 bar Allebrod F, Chatzichristodoulou C, Mogensen MB |
404 - 409 |
Carbon-tolerant solid oxide fuel cells using NiTiO3 as an anode internal reforming layer Wang ZQ, Wang ZB, Yang WQ, Peng RR, Lu YL |
410 - 422 |
A scalable and flexible hybrid energy storage system design and implementation Kim Y, Koh J, Xie Q, Wang YZ, Chang N, Pedram M |
423 - 430 |
A practical framework of electrical based online state-of-charge estimation of lithium ion batteries Leng F, Tan CM, Yazami R, Le MD |
431 - 438 |
Morphology studies on high-temperature polymer electrolyte membrane fuel cell electrodes Mack F, Klages M, Scholta J, Jorissen L, Morawietz T, Hiesgen R, Kramer D, Zeis R |
439 - 449 |
Local structural changes in LiMn1.5Ni0.5O4 spinel cathode material for lithium-ion batteries Rana J, Glatthaar S, Gesswein H, Sharma N, Binder JR, Chernikov R, Schumacher G, Banhart J |
450 - 458 |
Calendar aging of commercial graphite/LiFePO4 cell - Predicting capacity fade under time dependent storage conditions Grolleau S, Delaille A, Gualous H, Gyan P, Revel R, Bernard J, Redondo-Iglesias E, Peter J |