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The best corrosion resistance value of 33.1 kΩ cm2 and relatively high hardness value of 478 HV were recorded for the composite coating electrode that contains 20.4 wt.% GNS TiO2 compared with the other composite coating electrodes or pure Ni coatings.
Among the studied nickel sulphur coating electrodes, HER potentials of the coatings electrodeposited on the nickel foam substrate are lowest.
The structure of TFT is achieved by coating electrodes on PANI/ZnO layer and substrate.
Nickel sulphur coating electrodes were prepared on the nickel foam substrates by electrodeposition method.
A previously described procedure for coating electrodes with multiple layers of heteropolyanions and charge-balancing dipositive cations[1]was extended to incorporate catalytically active reactants in the coatings.
This work discusses the electrocatalysis of the oxygen reduction reaction (ORR) in alkaline media on ultra-thin porous coating electrodes formed by Pt and Pt Co particles dispersed on carbon (Pt/C and Pt Co/C, 1 1, 1 3, 1 5, 1 8 Pt Co atomic proportion).
Similar(53)
The electrochemical properties were investigated employing the thin porous coating electrode technique, in the presence and absence of dispersed platinum particles.
The supercapacitor cell was constructed using SPE sandwiched between two prepared AC-coated electrodes.
Coated electrodes were studied by scanning electron microscopy and cyclic voltammetry.
Coated electrodes with copper and tin oxide nanoparticles exhibited high activity in these reactions.
In addition, the electrochromic properties of PAP film-coated electrodes were examined.
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