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Addition of alloying elements to Cu has been demonstrated to provide increased electrocatalytic activity in comparison to the pure Cu electrode.
These structures may provide increased electrocatalytic activity for methanol oxidation reactions and oxygen reduction reactions in fuel cells.
The resulting multilayer films give a linear growth in bulk conductivity and increased electrocatalytic activity toward triiodides.
We demonstrate a new approach for producing highly dispersed supported metal phosphide powders with small particle size, improved stability and increased electrocatalytic activity towards some useful reactions.
The increased electrocatalytic activity is attributed to the high specific surface area of the 3D formation and the effective surface structure of the Pt Au alloy nanoparticles.
Compared with the monometallic Pt/G and commercial Pt/C catalysts, the Pt Co/G catalysts have a high stability and increased electrocatalytic activity that is conducive for the oxygen reduction reaction, suggesting their potential application in fuel cells.
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NaBH4 treatment allows increased electrocatalytic activities comparable to those obtained after other pretreatments, without a surface damage.
The series of increasing electrocatalytic activities correlates almost completely with that of the decreasing adhesion strengths between the oxygen-containing particles and the electrode surface.
The generation of the acerose crystals significantly increased the surface area that increased the electrocatalytic activity of the coating.
The study showed that Cr-substitution from 0.2 to 1.0 mol increased the electrocatalytic activity of the oxide towards the oxygen evolution reaction (OER), the optimum improvement in apparent electrocatalytic activity being with 0.8 mol Cr.
The progressive introduction of Ru in the electrodes increased their electrocatalytic activity for the oxygen evolution reaction with a change on the mechanism from non-active to active electrodes.
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