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A wide compositional range of Ni Pd alloy catalysts were prepared by electrodeposition for use as anode materials for methanol oxidative fuel cells in alkaline conditions.
The graphite electrode is coated in a nickel zinc bath by electrodeposition for use as anode materials for methanol oxidation in alkaline solutions.
Cyclic voltammetry and amperometric i t tests were adopted to characterize the electro-catalytic activities of the materials for methanol oxidation.
It proved that tungsten carbide had good electro-catalytic property close to that of the Pt-based materials for methanol oxidation and provided a new idea for developing electrode materials in the future.
As mentioned above, graphene/Au@PtAg alloy NRs hybrid compositions were excellent materials for methanol electro-oxidation.
Among bimetallic catalysts, PtNi nanoparticles (NPs) in particular are promising materials for methanol electro-oxidation since Ni is more economic than other metals [14, 22, 25].
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The synthesized Ga-Pt/G was examined as an electrode material for methanol oxidation reaction (MOR) and oxygen reduction reaction (ORR).
Methane, for instance, is the primary raw material for methanol production.
Further, the role of mesoporous zeolites based electrode materials for direct methanol fuel cell application is presented.
A series of sulfonated poly p-phenylene-co-aryl ether ketone)s (Spoly p-phenylene-co-arylsigned as membrane materials for direct methanol fuel cell (DMFC) apoly p-phenylene-co-aryl
In particular, we exploit Nafion/GO composite membrane as electrolyte material for direct methanol fuel cell (DMFC) in order to resolve current issue of methanol crossover.
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