Ressource pédagogique : Alejandro Anson-Casaos - Photoelectrochemical characterization of C/TiO2 and C/ZnO nanomaterials in aqueous electrolyte

Carbon nanostructures, including single-walled carbon nanotubes, reduced graphene oxide, and carbon dots, are inserted in TiO2 and ZnO photoanodes with the aim of improving their activity. For the electrode assembly, TiO2 or ZnO nanoparticles, as well as carbon nanomaterials, are dispersed in a liqu...
cours / présentation - Date de création : 16-06-2021
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Présentation de: Alejandro Anson-Casaos - Photoelectrochemical characterization of C/TiO2 and C/ZnO nanomaterials in aqueous electrolyte

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Anglais
Type pédagogique : cours / présentation
Niveau : enseignement supérieur
Durée d'exécution : 23 minutes 56 secondes
Contenu : image en mouvement
Document : video/mp4
Taille : 89.45 Mo
Droits : libre de droits, gratuit
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Description de la ressource pédagogique

Description (résumé)

Carbon nanostructures, including single-walled carbon nanotubes, reduced graphene oxide, and carbon dots, are inserted in TiO2 and ZnO photoanodes with the aim of improving their activity. For the electrode assembly, TiO2 or ZnO nanoparticles, as well as carbon nanomaterials, are dispersed in a liquid and deposited on FTO by spray coating. Various mixed and layer-by-layer electrode configurations are considered. As-prepared electrodes are evaluated by photoelectrochemical (PEC) techniques, mostly cyclic voltammetry and transient photocurrent measurements.   The insertion of the carbon component improves the photocurrent response depending on the measurement conditions, specifically the electrolyte pH and the presence of methanol as a hole scavenger. Therefore, hybrid carbon/semiconductor metal oxide nanomaterials can be applied in PEC processes for the production of hydrogen and the degradation of organic pollutants in water.

"Domaine(s)" et indice(s) Dewey

  • Chimie et sciences connexes (540)

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  • Identifiant de la fiche
    62463
  • Identifiant
    oai:canal-u.fr:62463
  • Schéma de la métadonnée
  • Entrepôt d'origine
    Canal-u.fr