1 - 8 |
Iron trifluoride synthesized via evaporation method and its application to rechargeable lithium batteries Myung ST, Sakurada S, Yashiro H, Sun YK |
9 - 17 |
Performance evaluation of a direct-biogas solid oxide fuel cell-micro gas turbine (SOFC-MGT) hybrid combined heat and power (CHP) system Wongchanapai S, Iwai H, Saito M, Yoshida H |
18 - 22 |
Nonflammable electrolyte for rechargeable lithium battery with sulfur based composite cathode materials Lin FJ, Wang JL, Jia H, Monroe CW, Yang J, NuLi YN |
23 - 29 |
Platinum nanoflowers decorated three-dimensional graphene-carbon nanotubes hybrid with enhanced electrocatalytic activity Rajesh, Paul RK, Mulchandani A |
30 - 35 |
Probing carbon edge exposure of iron phthalocyanine-based oxygen reduction catalysts by soft X-ray absorption spectroscopy Niwa H, Saito M, Kobayashi M, Harada Y, Oshima M, Moriya S, Matsubayashi K, Nabae Y, Kuroki S, Ikeda T, Terakura K, Ozaki J, Miyata S |
36 - 41 |
Preparation of dense silicate electrolyte coating with low pressure plasma spraying and very low pressure plasma spraying for intermediate-temperature solid oxide fuel cells Sun F, Zhang NN, Li JL, Liao HL |
42 - 49 |
The performance degradation of a passive direct formic acid fuel cell and its improvement by a hydrophobic filter Tsujiguchi T, Hirano S, Iwakami T, Nakagawa N |
50 - 55 |
Facile synthesis of Sn/TiO2 nanowire array composites as superior lithium-ion battery anodes Wei Z, Mao H, Huang T, Yu AS |
56 - 61 |
Study on different power and cycling performance of crystalline KxMnO2 center dot nH(2)O as cathode material for supercapacitors in Li2SO4, Na2SO4, and K2SO4 aqueous electrolytes Shao J, Li XY, Qu QT, Wu YP |
62 - 67 |
Carbon coated hollow Na2FePO4F spheres for Na-ion battery cathodes Langrock A, Xu YH, Liu YH, Ehrman S, Manivannan A, Wang CS |
68 - 73 |
Electrochemical reduction of CO2 over Sn-Nafion (R) coated electrode for a fuel-cell-like device Prakash GKS, Viva FA, Olah GA |
74 - 78 |
Needle-shaped 3D dye-sensitized solar cells using anodized Ti wire and Pt nanoparticle/carbon fiber electrodes Sun MX, Cui XL |
79 - 85 |
Improvement in stability of carbon support for platinum catalyst by applying silicon carbide coating Suzuki S, Onodera T, Kawaji J, Mizukami T, Morishima M, Yamaga K |
86 - 93 |
How to design more efficient organic dyes for dye-sensitized solar cells? Adding more sp(2)-hybridized nitrogen in the triphenylamine donor Chen SL, Yang LN, Li ZS |
94 - 99 |
Enhanced anode performance of microbial fuel cells by adding nanosemiconductor goethite Peng XH, Yu HB, Wang X, Gao NSJ, Geng LJ, Ai LN |
100 - 106 |
High-performance LiFePO4 cathode material from FePO4 microspheres with carbon nanotube networks embedded for lithium ion batteries Chen M, Du CY, Song B, Xiong K, Yin GP, Zuo PJ, Cheng XQ |
107 - 113 |
Enhanced photocatalytic hydrogen generation with Pt Nanoparticles on multi-phase polycrystalline microporous MnO2 photocatalyst Pai YH, Tsai CT, Fang SY |
114 - 118 |
The application of spray drying method in valve-regulated lead-acid battery Fan N, Li XH, Li H, Sun CH, Kong DL, Qian YT |
119 - 124 |
In-situ synthesis of magnetite/expanded graphite composite material as high rate negative electrode for rechargeable lithium batteries Zhang WD, Wan W, Zhou HH, Chen JT, Wang XY, Zhang XX |
125 - 128 |
Enhanced glucose electrooxidation at a binary catalyst of manganese and nickel oxides modified glassy carbon electrode El-Refaei SM, Saleh MM, Awad MI |
129 - 135 |
Degradation phenomena in a solid oxide electrolysis cell after 9000 h of operation Tietz F, Sebold D, Brisse A, Schefold J |
136 - 146 |
Lithium ion battery pack power fade fault identification based on Shannon entropy in electric vehicles Zheng YJ, Han XB, Lu LG, Li JQ, Ouyang MG |
147 - 154 |
Synthesis of large surface area carbon xerogels for electrochemical double layer capacitors Chang YM, Wu CY, Wu PW |
155 - 164 |
Development of a theoretically based thermal model for lithium ion battery pack Zhu C, Li XH, Song LJ, Xiang LM |
165 - 174 |
Surfactant-free electrochemical synthesis of hierarchical platinum particle electrocatalysts for oxidation of ammonia Liu J, Hu WB, Zhong C, Cheng YF |
175 - 182 |
Conductivity, viscosity and density of MClO4 (M = Li and Na) dissolved in propylene carbonate and gamma-butyrolactone at high concentrations Kuratani K, Uemura N, Senoh H, Takeshita HT, Kiyobayashi T |
183 - 189 |
Platinum-titanium alloy catalysts on a Magneli-phase titanium oxide support for improved durability in Polymer Electrolyte Fuel Cells Ioroi T, Akita T, Asahi M, Yamazaki S, Siroma Z, Fujiwara N, Yasuda K |
190 - 198 |
Synthesis and application of core-shell Co@Pt/C electrocatalysts for proton exchange membrane fuel cells Lin R, Cao CH, Zhao TT, Huang Z, Li B, Wieckowski A, Ma JX |
199 - 205 |
Numerical study of Li diffusion in polycrystalline LiCoO2 Yamakawa S, Yamasaki H, Koyama T, Asahi R |
206 - 213 |
Electrospun poly(vinylidene fluoride)/poly(methyl methacrylate) grafted TiO2 composite nanofibrous membrane as polymer electrolyte for lithium-ion batteries Cui WW, Tang DY, Gong ZL |
214 - 220 |
SOFC composite cathodes based on LSM and co-doped cerias (Ce0.8Gd0.1X0.1O2-delta, X = Gd, Cr, Mg, Bi, Ce) Balaguer M, Vert VB, Navarrete L, Serra JM |
221 - 231 |
Synthesis of Pt-Ir catalysts by coelectrodeposition: Application to ammonia electrooxidation in alkaline media Le Vot S, Roue L, Belanger D |
232 - 245 |
Numerical analysis on dynamic behavior of solid oxide fuel cell with power output control scheme Komatsu Y, Kimijima S, Szmyd JS |
246 - 253 |
Platinum-catalyzed carbon nanotubes for durability enhancement of low-temperature fuel cells Ha B, Han OH |
254 - 258 |
Enhanced conversion efficiency of dye-sensitized solar cells using Sm2O3-modified TiO2 nanotubes Liu R, Qiang LS, Yang WD, Liu HY |
259 - 267 |
Thermal Impedance Spectroscopy - A method for the thermal characterization of high power battery cells Fleckenstein M, Fischer S, Bohlen O, Baker B |
268 - 276 |
Improvement of the sub-grid-scale model designed for 3D numerical simulation of solid oxide fuel cell electrodes using an adaptive power index Kishimoto M, Iwai H, Miyawaki K, Saito M, Yoshida H |
277 - 283 |
Preparation and properties of cross-linked sulfonated poly(imide-siloxane) for polymer electrolyte fuel cell application Lin CC, Chang CB, Wang YZ |
284 - 288 |
Na3V2(PO4)(3) as cathode material for hybrid lithium ion batteries Du K, Guo HW, Hu GR, Peng ZD, Cao YB |
289 - 292 |
Ce0.8Sm0.2O2-delta-PrBaCo2O5+delta dual-phase membrane: Novel preparation and improved oxygen permeability Chen T, Zhao HL, Xie ZX, Wang J, Lu Y, Xu NS |
293 - 305 |
Equalization integrated online monitoring of health map and worthiness of replacement for battery pack of electric vehicles Ugle R, Li YY, Dhingra A |
306 - 311 |
A high-performance hard carbon for Li-ion batteries and supercapacitors application Ni JF, Huang YY, Gao LJ |
312 - 318 |
A CoOx/carbon double-layer thin film air electrode for nonaqueous Li-air batteries Yang Y, Sun Q, Li YS, Li H, Fu ZW |
319 - 324 |
Carbon electrode with perovskite-oxide catalyst for aqueous electrolyte lithium-air secondary batteries Ohkuma H, Uechi I, Imanishi N, Hirano A, Takeda Y, Yamamoto O |
325 - 335 |
Transient efficiency measurement of a combined heat and power fuel cell generator Hwang JJ |
336 - 340 |
Ion beam-mixed Ge electrodes for high capacity Li rechargeable batteries Rudawski NG, Yates BR, Holzworth MR, Jones KS, Elliman RG, Volinsky AA |
341 - 348 |
Exsolution of nickel nanoparticles at the surface of a conducting titanate as potential hydrogen electrode material for solid oxide electrochemical cells Arrive C, Delahaye T, Joubert O, Gauthier G |
349 - 357 |
Influence of the oxygen electrode and inter-diffusion barrier on the degradation of solid oxide electrolysis cells Hjalmarsson P, Sun XF, Liu YL, Chen M |