Repositorio Institucional
Repositorio Institucional
CONICET Digital
  • Inicio
  • EXPLORAR
    • AUTORES
    • DISCIPLINAS
    • COMUNIDADES
  • Estadísticas
  • Novedades
    • Noticias
    • Boletines
  • Ayuda
    • General
    • Datos de investigación
  • Acerca de
    • CONICET Digital
    • Equipo
    • Red Federal
  • Contacto
JavaScript is disabled for your browser. Some features of this site may not work without it.
  • INFORMACIÓN GENERAL
  • RESUMEN
  • ESTADISTICAS
 
Artículo

FT-IR-ATR as a tool to probe photocatalytic interfaces

Araujo, Paula ZulemaIcon ; Mendive, Cecilia BeatrizIcon ; García Rodenas, Luis Alberto; Morando, Pedro JuanIcon ; Regazzoni, Alberto ErnestoIcon ; Blesa, Miguel AngelIcon ; Bahnemann, Detlef
Fecha de publicación: 01/09/2005
Editorial: Elsevier Science
Revista: Colloids and Surfaces A: Physicochemical and Engineering Aspects
ISSN: 0927-7757
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Otras Ciencias Químicas

Resumen

 
The catalytic photo-oxidation on TiO2 (Degussa P-25) of oxalic acid at pH 3.7 and of catechol at pH 6.2 has been studied by in situ ATR-FT-IR. In the case of catechol, both FT-IR and HPLC demonstrate the formation of an intermediate, the accumulation of carbonate, and the depletion of the ligand on the illuminated surface. Ligand depletion is also demonstrated by the spectral evolution of adsorbed oxalate; the data in the case also suggest that different surface complexes may inter-convert directly on the surface. These findings illustrate the potentiality of in situ ATR-FT-IR to follow the evolution of the catalytic surface. It is also clearly demonstrated that under our experimental conditions, the photolytic oxidation of the adsorbed ligands is fast as compared with the rate of exchange with the bulk. In terms of simple mechanistic considerations, the systems behave as expected for low degrees of coverage, determined by fast surface reactions, k2{h+} ≫ k -1, where k-1 is the rate constant for hole trapping by the adsorbed ligand, k-1 the rate constant for ligand desorption, and {h+} is the effective hole concentration, determined by the intensity of light. The rate law then turns out to be R = k1N S[HL], where R is the reaction rate, k1 the adsorption rate constant, NS the surface site density, and [HL] is the bulk ligand concentration.
 
.
 
Palabras clave: Catechol , Ft-Ir/Atr , Gallic Acid , Intermediates , Photocatalysis , Surface Complexes
Ver el registro completo
 
Archivos asociados
Thumbnail
 
Tamaño: 407.3Kb
Formato: PDF
.
Descargar
Licencia
info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/57279
DOI: http://dx.doi.org/10.1016/j.colsurfa.2004.10.137
URL: https://www.sciencedirect.com/science/article/pii/S0927775705002633
Colecciones
Articulos(CERELA)
Articulos de CENTRO DE REFERENCIA PARA LACTOBACILOS (I)
Citación
Araujo, Paula Zulema; Mendive, Cecilia Beatriz; García Rodenas, Luis Alberto; Morando, Pedro Juan; Regazzoni, Alberto Ernesto; et al.; FT-IR-ATR as a tool to probe photocatalytic interfaces; Elsevier Science; Colloids and Surfaces A: Physicochemical and Engineering Aspects; 265; 1-3; 1-9-2005; 73-80
Compartir
Altmétricas
 

Enviar por e-mail
Separar cada destinatario (hasta 5) con punto y coma.
  • Facebook
  • X Conicet Digital
  • Instagram
  • YouTube
  • Sound Cloud
  • LinkedIn

Los contenidos del CONICET están licenciados bajo Creative Commons Reconocimiento 2.5 Argentina License

https://www.conicet.gov.ar/ - CONICET

Inicio

Explorar

  • Autores
  • Disciplinas
  • Comunidades

Estadísticas

Novedades

  • Noticias
  • Boletines

Ayuda

Acerca de

  • CONICET Digital
  • Equipo
  • Red Federal

Contacto

Godoy Cruz 2290 (C1425FQB) CABA – República Argentina – Tel: +5411 4899-5400 repositorio@conicet.gov.ar
TÉRMINOS Y CONDICIONES