Artículo
Electroanalysis using modified hierarchical nanoporous carbon materials
Coneo Rodriguez, Rusbel
; Baena Moncada, Angélica María
; Acevedo, Diego Fernando
; Planes, Gabriel Angel
; Miras, Maria Cristina; Barbero, César Alfredo
Fecha de publicación:
2013
Editorial:
Royal Society of Chemistry
Revista:
Faraday Discussions
ISSN:
1364-5498
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The role of the electrode nanoporosity in electroanalytical processes is discussed and specific phenomena (slow double layer charging, local pH effects) which can be present in porous electrode are described. Hierarchical porous carbon (HPC) materials are synthesized using a hard template method. The three dimensional carbon porosity is examined using scanning electron microscopy on flat surfaces cut using a focused ion beam (FIB-SEM). The electrochemical properties of the HPC are measured using cyclic voltammetry, AC impedance, chronoamperometry and Probe Beam Deflection (PBD) techniques. Chronoamperometry measurements of HPC seems to fit a transmission line model. PBD data show evidence of local pH changes inside the pores, during double layer charging. The HPC are modified by in situ (chemical or electrochemical) formation of metal (Pt/Ru) or metal oxide (CoOx, Fe3O4) nanoparticles. Additionally, HPC loaded with Pt decorated magnetite (Fe3O4) nanoparticles is produced by galvanic displacement. The modified HPC materials are used for the electroanalysis of different substances (CO, O2, AsO3 3). The role of the nanoporous carbon substrate in the electroanalytical data is evaluated.
Palabras clave:
Hieralrchical Nanoporus Carbon
,
Electrode Porosity
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Articulos(CCT - CORDOBA)
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - CORDOBA
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - CORDOBA
Citación
Coneo Rodriguez, Rusbel; Baena Moncada, Angélica María; Acevedo, Diego Fernando; Planes, Gabriel Angel; Miras, Maria Cristina; et al.; Electroanalysis using modified hierarchical nanoporous carbon materials; Royal Society of Chemistry; Faraday Discussions; 164; 2013; 147-173
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