391 - 391 |
Fuel cells and catalysis - Introduction Hutchings GJ, Burstein GT |
393 - 400 |
Electrocatalysts for fuel cells Acres GJK, Frost JC, Hards GA, Potter RJ, Ralph TR, Thompsett D, Burstein GT, Hutchings GJ |
401 - 410 |
Low temperature fuel cells : Interactions between catalysts and engineering design Williams KR, Burstein GT |
411 - 423 |
Catalytic aspects of the steam reforming of hydrocarbons in internal reforming fuel cells Clarke SH, Dicks AL, Pointon K, Smith TA, Swann A |
425 - 437 |
Aspects of the anodic oxidation of methanol Burstein GT, Barnett CJ, Kucernak AR, Williams KR |
439 - 443 |
Hydrogen spill-over effect on Pt/WO3 anode catalysts Tseung ACC, Chen KY |
445 - 457 |
Mechanism and electrocatalysis in the direct methanol fuel cell Hamnett A |
459 - 466 |
Development of solid oxide fuel cells based on a Ce(Gd)O2-x electrolyte film for intermediate temperature operation Sahibzada M, Steele BCH, Zheng K, Rudkin RA, Metcalfe IS |
467 - 472 |
Development of novel anodes for solid oxide fuel cells Irvine JTS, Fagg DP, Labrincha J, Marques FMB |
473 - 481 |
The promotion of CO electro-oxidation on platinum-bismuth as a model for surface mediated oxygen transfer Hayden BE |
483 - 492 |
Nickel hydroxide electrocatalysts for alcohol oxidation reactions : An evaluation by infrared spectroscopy and electrochemical methods Kowal A, Port SN, Nichols RJ |