1 - 5 |
A direct glucose alkaline fuel cell using MnO2-carbon nanocomposite supported gold catalyst for anode glucose oxidation Li L, Scott K, Yu EH |
6 - 13 |
Effect of organo-fluorine compounds on the thermal stability and electrochemical properties of electrolyte solutions for lithium ion batteries Ohmi N, Nakajima T, Ohzawa Y, Koh M, Yamauchi A, Kagawa M, Aoyama H |
14 - 20 |
Natural, cheap and environmentally friendly binder for supercapacitors Bockenfeld N, Jeong SS, Winter M, Passerini S, Balducci A |
21 - 27 |
A molecular simulation study of Pt stability on oxidized carbon nanoparticles Ban S, Malek K, Huang C |
28 - 34 |
Accelerated devitrification of a strontiumlanthanumaluminoborosilicate based intermediate temperature solid oxide fuel cell glass sealant and its effect on thermophysical behaviour of the glass ceramics Ojha PK, Chongdar TK, Gokhale NM, Kulkarni AR |
35 - 41 |
Carbon coated lithium cobalt phosphate for Li-ion batteries: Comparison of three coating techniques Ni JF, Gao LJ, Lu L |
42 - 48 |
A novel method to produce a hierarchical porous carbon as a conductive support of PtRu particles. Effect on CO and methanol electrooxidation Baena-Moncada AM, Planes GA, Moreno MS, Barbero CA |
49 - 56 |
Electrodeposition of polypyrrole-carbon nanotube composites for electrochemical supercapacitors Li X, Zhitomirsky I |
57 - 63 |
Sintering of porous strontium doped lanthanum manganite-yttria stabilized zirconia composite in controlled oxygen atmosphere at 1400 degrees C Li N, Mahapatra MK, Singh P |
64 - 69 |
Residual stress change with time of a segmented-in-series solid oxide fuel cell using an in situ X-ray stress measuring method Somekawa T, Fujita K, Matsuzaki Y |
70 - 77 |
The distribution of relaxation times as basis for generalized time-domain models for Li-ion batteries Schmidt JP, Berg P, Schonleber M, Weber A, Ivers-Tiffee E |
78 - 83 |
A transparent and stable polypyrrole counter electrode for dye-sensitized solar cell Bu CH, Tai QD, Liu YM, Guo SS, Zhao XZ |
84 - 89 |
Effect of annealing on the structure and electrochemical properties of La1.8Ti0.2MgNi8.9Al0.1 hydrogen storage alloy Jiang WQ, Mo XH, Guo J, Wei YY |
90 - 96 |
Tris(trimethylsilyl) borate as an electrolyte additive to improve the cyclability of LiMn2O4 cathode for lithium-ion battery Liu YB, Tan L, Li L |
97 - 107 |
Combining high temperature electrochemistry and time of flight secondary ion mass spectrometry: Quasi in situ study of lanthanum strontium chromate manganate electrodes Rohnke M, Falk M, Huber AK, Janek J |
108 - 113 |
The effects of persulfate treatment on the electrochemical properties of Li[Li0.2Mn0.54Ni0.13Co0.13]O-2 cathode material Zheng J, Deng SN, Shi ZC, Xu HJ, Xu H, Deng YF, Zhang Z, Chen GH |
114 - 121 |
Automatic device for continuous measurement of potential distribution and acid stratification in flooded lead-acid batteries Schulte D, Sanders T, Waag W, Kowal J, Sauer DU, Karden E |
122 - 127 |
Nitrogen-doped carbon coated Li4Ti5O12 nanocomposite: Superior anode materials for rechargeable lithium ion batteries Li HS, Shen LF, Zhang XG, Wang J, Nie P, Che Q, Ding B |
128 - 133 |
Cathodic deposition of Ni(OH)(2) and Co(OH)(2) for asymmetric supercapacitors: Importance of the electrochemical reversibility of redox couples Hu CC, Chen JC, Chang KH |
134 - 140 |
Effect of diffusion layers fabricated with different fiber diameters on the performance of low temperature proton exchange membrane fuel cells Hung CJ, Liu CH, Ko TH, Chen WH, Cheng SH, Chen WS, Yu A, Kannan AM |
141 - 148 |
Synthesis of sandwich-like TiO2@C composite hollow spheres with high rate capability and stability for lithium-ion batteries Liu LC, Fan Q, Sun CZ, Gu XR, Li H, Gao F, Chen YF, Dong L |
149 - 156 |
Ba-substituted LSCM anodes for solid oxide fuel cells Lay E, Dessemond L, Gauthier G |
157 - 171 |
Mathematical modelling of direct borohydride fuel cells Shah AA, Singh R, de Leon CP, Wills RG, Walsh FC |
172 - 176 |
Efficient water recirculation for portable direct methanol fuel cells using electroosmotic pumps Kwon K, Kim D |
177 - 185 |
Identification and remediation of sulfation in lead-acid batteries using cell voltage and pressure sensing Shi Y, Ferone CA, Rahn CD |
186 - 190 |
Application of quinonic cathode compounds for quasi-solid lithium batteries Hanyu Y, Ganbe Y, Honma I |
191 - 200 |
Life modeling of a lithium ion cell with a spinel-based cathode Cai L, Dai YL, Nicholson M, White RE, Jagannathan K, Bhatia G |
201 - 209 |
Electrical model to predict current-voltage behaviours of lithium ferro phosphate batteries using a transient response correction method Low WY, Aziz JA, Idris NRN, Saidur R |
210 - 216 |
Investigation of the local catalyst distribution in an aged direct methanol fuel cell MEA by means of differential synchrotron X-ray absorption edge imaging with high energy resolution Arlt T, Manke I, Wippermann K, Riesemeier H, Mergel J, Banhart J |
217 - 227 |
Novel composite solid state electrolytes on the base of BaCeO3 and CeO2 for intermediate temperature electrochemical devices Medvedev D, Maragou V, Pikalova E, Demin A, Tsiakaras P |
228 - 231 |
Ultra high capacitance values of Pt@RuO2 core-shell nanotubular electrodes for microsupercapacitor applications Ponrouch A, Garbarino S, Bertin E, Guay D |
232 - 241 |
Synthesis of Pd and Nb-doped TiO2 composite supports and their corresponding Pt-Pd alloy catalysts by a two-step procedure for the oxygen reduction reaction Wang YJ, Wilkinson DP, Guest A, Neburchilov V, Baker R, Nan FH, Botton GA, Zhang JJ |
242 - 246 |
Intercalated Si/C films as the anode for Li-ion batteries with near theoretical stable capacity prepared by dual plasma deposition Li W, Yang R, Wang XJ, Wang T, Zheng J, Li XG |
247 - 251 |
High-performance alkaline fuel cells using crosslinked composite anion exchange membrane Zhao Y, Yu HM, Yang DL, Li J, Shao ZG, Yi BL |
252 - 260 |
Mesoscale modeling of electric double layer capacitors with three-dimensional ordered structures Wang HN, Pilon L |
261 - 265 |
Optimizing Li/MnO2 batteries: Relating manganese dioxide properties and electrochemical performance Dose WM, Donne SW |
266 - 271 |
A high energy and power density hybrid supercapacitor based on an advanced carbon-coated Li4Ti5O12 electrode Jung HG, Venugopal N, Scrosati B, Sun YK |
272 - 283 |
Modeling a hybrid Rankine-cycle/fuel-cell underwater propulsion system based on aluminum-water combustion Waters DF, Cadou CP |
284 - 289 |
Conductive polymer film supporting LiFePO4 as composite cathode for lithium ion batteries Trinh ND, Saulnier M, Lepage D, Schougaard SB |
290 - 299 |
Time independent and time dependent probability of failure of solid oxide fuel cells by stress analysis and the Weibull method Clague R, Marquis AJ, Brandon NP |
300 - 307 |
Synthesis and electrochemical performance of Li1.131Mn0.504Ni0.243Co0.122O2 cathode materials for lithium ion batteries via freeze drying Shi SJ, Tu JP, Tang YY, Yu YX, Zhang YQ, Wang XL |
308 - 317 |
An integrated mathematical tool aimed at developing highly performing and cost-effective fuel cell hybrid vehicles Sorrentino M, Pianese C, Maiorino M |
318 - 327 |
Fabrication of novel phosphotungstic acid functionalized mesoporous silica composite membrane by alternative gel-casting technique Zhang L, He HQ, Kamal R, Zhou WJ, Xue YH, Ding OL, Chan SH |
328 - 333 |
A new ionic liquid organic redox electrolyte for high-efficiency iodine-free dye-sensitized solar cells Wu HW, Lv ZB, Hou SC, Cai X, Wang D, Kafafy H, Fu YP, Zhang C, Chu ZZ, Zou DC |
334 - 344 |
A distributed thermal model for a Li-ion electrode plate pair Guo M, White RE |
345 - 355 |
Corrosion and thermal stability of multi-walled carbon nanotube-graphite-acrylonitrile-butadiene-styrene composite bipolar plates for polymer electrolyte membrane fuel cells de Oliveira MCL, Ett G, Antunes RA |
356 - 365 |
Ageing and thermal conductivity of Porous Transport Layers used for PEM Fuel Cells Burheim OS, Ellila G, Fairweather JD, Labouriau A, Kjelstrup S, Pharoah JG |
366 - 371 |
Structures and electrochemical properties of Li1.075V0.925-xMxO2 (M = Cr or Fe, 0 <= x <= 0.025) as new anode materials for secondary lithium batteries Kim WT, Jeong YU, Choi HC, Lee YJ, Kim YJ, Song JH |
372 - 380 |
Hybrid solar-fuel cell combined heat and power systems for residential applications: Energy and exergy analyses Hosseini M, Dincer I, Rosen MA |
381 - 386 |
Manganese-polypyrrole-carbon nanotube, a new oxygen reduction catalyst for air-cathode microbial fuel cells Lu M, Guo L, Kharkwal S, Wu HN, Ng HY, Li SFY |
387 - 396 |
Modeling of a 5 kW(e) tubular solid oxide fuel cell based system operating on desulfurized JP-8 fuel for auxiliary and mobile power applications Tanim T, Bayless DJ, Trembly JP |
397 - 405 |
Residual stresses in suspension plasma sprayed electrolytes in metal-supported solid oxide fuel cell half cells Macwan A, Chen DL, Marr M, Kesler O |
406 - 418 |
Fuel cell Plug-in Hybrid Electric Vehicle anticipatory and real-time blended-mode energy management for battery life preservation Kelouwani S, Agbossou K, Dube Y, Boulon L |
419 - 426 |
Investigation of different binding agents for nanocrystalline anatase TiO2 anodes and its application in a novel, green lithium-ion battery Moretti A, Kim GT, Bresser D, Renger K, Paillard E, Marassi R, Winter M, Passerini S |
427 - 434 |
Synthesis of high-capacity Ti- and/or Fe-substituted Li2MnO3 positive electrode materials with high initial cycle efficiency by application of the carbothermal reduction method Tabuchi M, Nabeshima Y, Takeuchi T, Kageyama H, Imaizumi J, Shibuya H, Akimoto J |
435 - 446 |
The calibration and validation of a model for simulating the thermal and electrical performance of a 1 kW(AC) proton-exchange membrane fuel-cell micro-cogeneration device Johnson G, Beausoleil-Morrison I, Strathearn B, Thorsteinson E, Mackintosh T |
447 - 454 |
Comparison of gradability performance of fuel cell hybrid electric and internal-combustion engine vehicles Ragheb H, Aydin M, El-Gindy M, Kishawy HA |
455 - 461 |
Improving microstructure of silicon/carbon nanofiber composites as a Li battery anode Howe JY, Burton DJ, Qi Y, Meyer HM, Nazri M, Nazri GA, Palmer AC, Lake PD |