107 - 115 |
Investigation of grafted ETFE-based polymer membranes as alternative electrolyte for direct methanol fuel cells Arico AS, Baglio V, Creti P, Di Blasi A, Antonucci V, Brunea J, Chapotot A, Bozzi A, Schoemans J |
116 - 125 |
CO tolerance electrocatalyst of PtRu-HxMeO3/C (Me = W, Mo) made by composite support method Hou Z, Yi B, Yu H, Lin Z, Zhang H |
126 - 131 |
PAA/imidazol-based proton conducting polymer electrolytes Bozkurt A, Meyer WH, Wegner G |
132 - 136 |
Polymer-ceramic composite protonic conductors Kumar B, Fellner JP |
137 - 150 |
Improvement in methanol oxidation in a centrifugal field Cheng H, Scott K |
151 - 162 |
Carburisation of interconnect materials in solid oxide fuel cells Jian L, Huezo J, Ivey DG |
163 - 171 |
Further refinements in the segmented cell approach to diagnosing performance in polymer electrolyte fuel cells Bender G, Wilson MS, Zawodzinski TA |
172 - 181 |
Novel microfabrication approaches for directly patterning PEM fuel cell membranes Shah K, Shin WC, Besser RS |
182 - 189 |
Homogeneous kinetics and equilibrium predictions of coking propensity in the anode channels of direct oxidation solid-oxide fuel cells using dry natural gas Walters KM, Dean AM, Zhu HY, Kee RJ |
190 - 199 |
A semi-empirical model of the direct methanol fuel cell performance - Part I. Model development and verification Argyropoulos P, Scott K, Shukla AK, Jackson C |
200 - 205 |
The importance of the fuel choice on the efficiency of a solid oxide fuel cell system Coutelieris FA, Douvartzides S, Tsiakaras P |
206 - 215 |
Evolution of local electronic and atomic structure of Co-doped LiMn2O4 cathode material for lithium rechargeable batteries Hwang BJ, Tsai YW, Santhanam R, Wu YW, Hu SG, Lee JF, Liu DG |
216 - 221 |
Anode behaviors of magnesium-antimony intermetallic compound for lithium secondary battery Honda H, Sakaguchi H, Tanaka I, Esaka T |
222 - 229 |
Complexation of poly(vinylidene fluoride): LiPF6 solid polymer electrolyte with enhanced ion conduction in'wet' form Chiang CY, Shen YJ, Reddy AJ, Chu PP |
230 - 240 |
Mathematical modeling of the capacity fade of Li-ion cells Ramadass P, Haran B, White R, Popov BN |
241 - 246 |
A capacity and power fade study of Li-ion cells during life cycle testing Belt JR, Ho CD, Motloch CG, Miller TJ, Duong TQ |
247 - 252 |
Li(Ni1/3Co1/3Mn1/3)O-2 as a suitable cathode for high power applications Belharouak I, Sun YK, Liu J, Amine K |
253 - 260 |
The preparation of highly porous structures from filamentary nickel powders Zaitsev AY, Wilkinson DS, Weatherly GC, Stephenson TF |