INVESTIGADORES
FERNANDEZ Jose Luis
artículos
Título:
Kinetic study of the hydrogen oxidation reaction on nanostructured iridium electrodes in acid solutions
Autor/es:
M. ANGELES MONTERO; JOSÉ L. FERNÁNDEZ; MARÍA R. GENNERO DE CHIALVO; ABEL C. CHIALVO
Revista:
JOURNAL OF PHYSICAL CHEMISTRY C
Editorial:
AMER CHEMICAL SOC
Referencias:
Lugar: Washington; Año: 2013 vol. 117 p. 25269 - 25275
ISSN:
1932-7447
Resumen:
The hydrogen oxidation reaction was studied on a rotating disc electrode of nanostructured iridium supported on glassy carbon. The electrode was prepared via sputtering and further annealing at 400 °C under a hydrogen atmosphere to avoid the presence of iridium oxide. The iridium film was analyzed by microscopic (scanning electron microscopy (SEM), atomic force microscopy (AFM)), spectroscopic (X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS)), and electrochemical (cyclic voltammetry) techniques, which allowed us to verify the nanostructured morphology and the absence of any phase other than metallic iridium. The real surface area was evaluated by adsorption of underpotential deposition (UDP) hydrogen and CO stripping. Experimental current-overpotential (eta) curves of the hydrogen oxidation reaction were obtained in the range -0.03 V <= eta <= 0.20 V at different rotation rates in sulfuric acid solution. They were correlated by kinetic expressions, and the corresponding values of the kinetic parameters were evaluated. It was verified that over this overpotential region the reaction proceeds almost purely through the Tafel-Volmer route. Moreover, an exchange current density j0 = 1.34 mA/cm2 was calculated.