Producción Científica Profesorado

Electrochemical Synthesis of Palladium Nanoparticles on HOPG Electrode.



Mendoza Huizar, Luis Humberto

2014

Electrochemical Synthesis of Palladium Nanoparticles on HOPG Electrode. David Garrido-Márquez, L.H. Mendoza-Huizar, Clara Hilda-Rios-Reyes, C. Galán-Vidal, Advanced Materials Research Vol. 976 (2014) pp 139-143. ISSN. 1662-8985. DOI:10.4028/www.scientific.net/AMR.976.139


Abstract


In the present work, it was analyzed the palladium electrodeposition onto High Oriented Pyrolitic Graphite (HOPG) electrode from an aqueous solution (0.001 M PdCl2 + 1M NH4Cl (pH 5)) through cyclic voltammetry and chronoamperometry. The analysis of voltammetric data showed that palladium electrodeposition is controlled by mass transfer. From the potentiostatic study it was calculated the diffusion coefficient, the number of active nucleation sites (N0) and the rate constant of the proton reduction process (kPR). It was seen that an increment of N0 and kPR values is obtained when the overpotential applied is increased.



Producto de Investigación




Artículos relacionados

A theoretical quantum study on the distribution of electrophilic and nucleophilic active sites on th...

Morphological and magnetic properties of cobalt nanoclusters electrodeposited onto HOPG

Synthesis, Characterization and Catalytic Activity of Supported NiMo Catalysts

The role of temperature in copper electrocrystallization in ammoniachloride solutions

A Voltammetric Study Of The Underpotential Deposition Of Cobalt Onto A Glassy Carbon Electrode

Analysis of the experimental pressuretemperature behavior in the isotropicnematic phase transition f...

Nucleation and growth of cobalt onto different substrates: Part II. The upd-opd transition onto a go...

Evaluación de Esteroides Aromáticos como Indicadores de Madurez Térmica en Extractos de Roca

THEORETICAL STUDY ON THE MODIFICATION OF ACTIVE SITES IN GOLD SURFACES MODELED AS FINITE CLUSTERS: I...

Potentiometric behavior of graphite-epoxy electrochemical transducers towards anions, cations and pH...