1 - 9 |
Enhancing proton conduction under low humidity by incorporating core-shell polymeric phosphonic acid submicrospheres into sulfonated poly(ether ether ketone) membrane Nie LL, Wang JT, Xu T, Dong H, Wu H, Jiang ZY |
10 - 15 |
High-capacity Li2Mn0.8Fe0.2SiO4/carbon composite nanofiber cathodes for lithium-ion batteries Zhang S, Li Y, Xu GJ, Li SL, Lu Y, Toprakci O, Zhang XW |
16 - 30 |
Alkaline membrane fuel cell (AMFC) modeling and experimental validation Sommer EM, Martins LS, Vargas JVC, Gardolinski JEFC, Ordonez JC, Marino CEB |
31 - 39 |
Electrochemical properties of pure Ba0.5Sr0.5Co0.8Fe0.2O3 and Ba0.5Sr0.5Co0.8Fe0.2O3-based composite cathodes for an intermediate temperature solid oxide fuel cell with Sc-doped zirconia solid electrolyte Park HJ, Kwak C, Kim JS, Ahn SJ |
40 - 46 |
Nonlinear viscoelastic-plastic constitutive description of proton exchange membrane under immersed condition Shi SW, Yu DJ, Gao LL, Chen G, Chen J, Chen X |
47 - 54 |
Novel structured electrolytes for solid oxide fuel cells Timurkutluk B, Celik S, Timurkutluk C, Mat MD, Kaplan Y |
55 - 62 |
Properties and electrochemical performance of La0.75Sr0.25Cr0.5Mn0.5O3-delta-La0.2Ce0.8O2-delta composite anodes for solid oxide fuel cells Rath MK, Choi BH, Lee KT |
63 - 68 |
Effects of pre-oxidation on the microstructural and electrical properties of La0.67Sr0.33MnO3-delta coated ferritic stainless steels Yang P, Liu CK, Wu JY, Shong WJ, Lee RY, Sung CC |
69 - 77 |
Application of BaTiO3 as anode materials for H2S-containing CH4 fueled solid oxide fuel cells Li JH, Fu XZ, Luo JL, Chuang KT, Sanger AR |
78 - 82 |
Effect of vanadium redox species on photoelectrochemical behavior of TiO2 and TiO2/WO3 photo-electrodes Liu D, Liu FQ, Liu JG |
83 - 92 |
Sulfonated poly(ether ether ketone)/amino-acid functionalized titania hybrid proton conductive membranes Wu H, Shen XH, Xu T, Hou WQ, Jiang ZY |
93 - 99 |
Novel functionally graded acicular electrode for solid oxide cells fabricated by the freeze-tape-casting process Chen Y, Bunch J, Li TS, Mao ZP, Chen FL |
100 - 105 |
Synthesis and characterization of high power LiFePO4/C nano-plate thin films Zhou N, Liu YY, Li JG, Uchaker E, Liu SQ, Huang KL, Cao GZ |
106 - 111 |
Three-dimensional porous nano-Ni supported silicon composite film for high-performance lithium-ion batteries Zhang YQ, Xia XH, Wang XL, Mai YJ, Shi SJ, Tang YY, Cu CG, Tu JP |
112 - 118 |
A passively-fed methanol steam reformer heated with two-stage bi-fueled catalytic combustor Lo KF, Wong SC |
119 - 127 |
Water based processing of LiFePO4/C cathode material for Li-ion batteries utilizing freeze granulation Orlenius J, Lyckfeldt O, Kasvayee KA, Johander P |
128 - 139 |
Effects of Al- and Mn-contents in the negative MH alloy on the self-discharge and long-term storage properties of Ni/MH battery Kong L, Chen B, Young K, Koch J, Chan A, Li W |
140 - 144 |
Calcium doped Y3Fe5O12 as a new cathode material for intermediate temperature solid oxide fuel cells Zhong W, Ling YH, Rao YY, Peng RR, Lu YL |
145 - 155 |
Effect of flow pulsation on mass transport in a cathode channel of polymer electrolyte membrane fuel cell Han HS, Kim YH, Kim SY, Hyun JM |
156 - 159 |
Direct ethanol solid oxide fuel cell operating in gradual internal reforming Nobrega SD, Galesco MV, Girona K, de Florio DZ, Steil MC, Georges S, Fonseca FC |
160 - 168 |
Effects of cell positive cans and separators on the performance of high-voltage Li-ion batteries Chen XL, Xu W, Xiao J, Engelhard MH, Ding F, Mei DH, Hu DH, Zhang J, Zhang JG |
169 - 179 |
Electrochemical and spectroscopic study of novel Cu and Fe-based catalysts for oxygen reduction in alkaline media He QG, Yang XF, He RH, Bueno-Lopez A, Miller H, Ren XM, Yang WL, Koel BE |
180 - 185 |
Li-ion capacitors with carbon cathode and hard carbon/stabilized lithium metal powder anode electrodes Cao WJ, Zheng JP |
186 - 202 |
Assessment on hermetic property and mechanical compatibility of various groove-gasket sealing designs for solid oxide fuel cell stack Punbusayakul N, Boonsiri K, Charojrochkul S, Fungtammasan B, Charoensuk J |
203 - 217 |
Feasibility study for SOFC-GT hybrid locomotive power: Part I. Development of a dynamic 3.5 MW SOFC-GT FORTRAN model Martinez AS, Brouwer J, Samuelsen GS |
218 - 222 |
A flat-tubular solid oxide fuel cell with a dense interconnect film coated on the porous anode support Park BK, Lee JW, Lee SB, Lim TH, Park SJ, Song RH, Shin DR |
223 - 228 |
Nd-nickelate solid oxide fuel cell cathode sensitivity to Cr and Si contamination Schuler JA, Lubbe H, Hessler-Wyser A, Van Herle J |
229 - 232 |
Magnesiothermically reduced diatomaceous earth as a porous silicon anode material for lithium ion batteries Shen LY, Guo XW, Fang XP, Wang ZX, Chen LQ |
233 - 238 |
Study of a Li-air battery having an electrolyte solution formed by a mixture of an ether-based aprotic solvent and an ionic liquid Cecchetto L, Salomon M, Scrosati B, Croce F |
239 - 248 |
Lithium-sulphur batteries - binder free carbon nanotubes electrode examined with various electrolytes Hagen M, Dorfler S, Althues H, Tubke J, Hoffmann MJ, Kaskel S, Pinkwart K |
249 - 254 |
High gravimetric capacity and long cycle life in Mn3O4/graphene platelet/LiCMC composite lithium-ion battery anodes Lavoie N, Malenfant PRL, Courtel FM, Abu-Lebdeh Y, Davidson IJ |
255 - 264 |
An aqueous electrolyte, sodium ion functional, large format energy storage device for stationary applications Whitacre JF, Wiley T, Shanbhag S, Wenzhuo Y, Mohamed A, Chun SE, Weber E, Blackwood D, Lynch-Bell E, Gulakowski J, Smith C, Humphreys D |
265 - 269 |
Iron- and nitrogen-functionalized graphene as a non-precious metal catalyst for enhanced oxygen reduction in an air-cathode microbial fuel cell Li SZ, Hu YY, Xu Q, Sun J, Hou B, Zhang YP |
270 - 274 |
Enhanced oxygen diffusion in low barium-containing La0.2175Pr0.2175Ba0.145Sr0.4Fe0.8Co0.2O3-delta intermediate temperature solid oxide fuel cell cathodes Vert VB, Serra JM, Kilner JA, Burriel M |
275 - 286 |
Direct carbon fuel cell: A proposed hybrid design to improve commercialization potential Ruflin J, Perwich AD, Brett C, Berner JK, Lux SM |
287 - 295 |
Structural study of LiFePO4-LiNiPO4 solid solutions Tabassam L, Giuli G, Moretti A, Nobili F, Marassi R, Minicucci M, Gunnella R, Olivi L, Di Cicco A |
296 - 303 |
Thermal modelling of Li-ion polymer battery for electric vehicle drive cycles Chacko S, Chung YMM |
304 - 316 |
Reinvestigation on the state-of-the-art nonaqueous carbonate electrolytes for 5 V Li-ion battery applications Xu W, Chen XL, Ding F, Xiao J, Wang DY, Pan AQ, Zheng JM, Li XHS, Padmaperuma AB, Zhang JG |
317 - 337 |
Characterization techniques for gas diffusion layers for proton exchange membrane fuel cells - A review Arvay A, Yli-Rantala E, Liu CH, Peng XH, Koski P, Cindrella L, Kauranen P, Wilde PM, Kannan AM |
338 - 342 |
Nickel ferrite-graphene heteroarchitectures: Toward high-performance anode materials for lithium-ion batteries Fu YS, Wan YH, Xia H, Wang X |
343 - 349 |
Ultra-thin film solid oxide fuel cells utilizing un-doped nanostructured zirconia electrolytes Ko CH, Kerman K, Ramanathan S |
350 - 357 |
Shape-alterable and -recoverable graphene/polyurethane bi-layered composite film for supercapacitor electrode Tai ZX, Yan XB, Xue QJ |
358 - 374 |
Feasibility study for SOFC-GT hybrid locomotive power part II. System packaging and operating route simulation Martinez AS, Brouwer J, Samuelsen GS |
375 - 381 |
Analysis of gas products from direct utilization of carbon in a solid oxide fuel cell Siengchum T, Guzman F, Chuang SSC |
382 - 390 |
Porous anodes with helical flow pathways in bioelectrochemical systems: The effects of fluid dynamics and operating regimes Kim JR, Boghani HC, Amini N, Aguey-Zinsou KF, Michie I, Dinsdale RM, Guwy AJ, Guo ZX, Premier GC |
391 - 401 |
Modelling the impact of variations in electrode manufacturing on lithium-ion battery modules Kenney B, Darcovich K, MacNeil DD, Davidson IJ |