153 - 159 |
Proton conductivity in stoichiometric and sub-stoichiometric yittrium doped SrCeO3 ceramic electrolytes Sammes N, Phillips R, Smirnova A |
160 - 169 |
Nickel as a catalyst for the electro-oxidation of methanol in alkaline medium Rahim MAA, Hameed RMA, Khalil MW |
170 - 180 |
Pt-Ru-adatom nanoparticles as anode catalysts for direct methanol fuel cells Cao DX, Bergens SH |
181 - 184 |
Efficiency of electrochemical systems Rao A, Maclay J, Samuelsen S |
185 - 196 |
Performance studies of PEM fuel cells with interdigitated flow fields Wang L, Liu HT |
197 - 201 |
Electrochemical performance of granulated titania nanoparticles Wilhelm O, Pratsinis SE, de Chambrier E, Crouzet M, Exnarb I |
202 - 210 |
Preparation of porous, chemically cross-linked, PVdF-based gel polymer electrolytes for rechargeable lithium batteries Cheng CL, Wan CC, Wang YY |
211 - 221 |
Charge-discharge characteristics of LiCoO2/mesocarbon microbeads battery with poly(vinyl chloride)-based composite polymer electrolyte Subban RHY, Arof AK |
222 - 234 |
DSC investigation of exothermic reactions occurring at elevated temperatures in lithium-ion anodes containing PVDF-based binders Roth EP, Doughty DH, Franklin J |
235 - 240 |
Vibrational, ac impedance and dielectric spectroscopic studies of poly(vinylacetate)-N,N-dimethylformamide-LiClO4 polymer gel electrolytes Baskaran R, Selvasekarapandian S, Hirankumar G, Bhuvaneswari MS |
241 - 251 |
The effect of compression on natural graphite anode performance and matrix conductivity Striebel KA, Sierra A, Shim J, Wang CW, Sastry AM |
252 - 261 |
Extended Kalman filtering for battery management systems of LiPB-based HEV battery packs - Part 1. Background Plett GL |
262 - 276 |
Extended Kalman filtering for battery management systems of LiPB-based HEV battery packs - Part 2. Modeling and identification Plett GL |
277 - 292 |
Extended Kalman filtering for battery management systems of LiPB-based HEV battery packs - Part 3. State and parameter estimation Plett GL |
293 - 297 |
Li2CO3 in LiNi0.8Co0.15Al0.05O2 cathodes and its effects on capacity and power Zhuang GV, Chen GY, Shim J, Song XY, Ross PN, Richardson TJ |
298 - 307 |
On the key importance of homogeneity in the electrochemical performance of industrial positive active materials in nickel batteries Casas-Cabanas M, Hernandez JC, Gil V, Soria ML, Palacin MR |
308 - 317 |
Three-component layer double hydroxides by urea precipitation: structural stability and electrochemistry Mavis B, Akinc M |
318 - 323 |
Characterization and performance of high power iron(VI) ferrate batteries Walz KA, Suyama AN, Suyama WE, Sene JJ, Zeltner WA, Armacanqui EM, Roszkowski AJ, Anderson MA |
324 - 330 |
Synthesis and electrochemical properties of mesoporous nickel oxide Xing W, Li F, Yan ZF, Lu GQ |