Memorias de investigación
Artículos en revistas:
Highly photoactive anatase nanoparticles obtained using trifluoroacetic acid as an electron scavenger and morphological control agent
Año:2013

Áreas de investigación
  • Física química y matemáticas,
  • Ingenierías

Datos
Descripción
Fluorine species adsorbed on the surface of TiO2 anatase nanoparticles improve their photocatalytic performance by reducing the recombination rate of photogenerated electrons and holes. Trifluoroacetic acid (TFAA) has been recently proposed as a promising harmless substitute for hydrofluoric acid (HF) in preparing fluorine-modified anatase with good scavenger properties. However the photocatalytic performance of the TiO2 nanoparticles also depends on their specific morphology, by which the number and type of crystal facets, which remain exposed, are determined. A comprehensive study is presented in this contribution which for the first time describes the role of TFAA in stabilizing the highly photoactive {001} TiO2 facets. Furthermore, by reducing the amount of water incorporated into the reaction medium, a simple one-step synthesis method is also proposed that allows the preparation of TFAA-modified anatase nanoparticles with specific morphology and selected stabilized facets, eventually yielding a semiconductor material with excellent photocatalytic properties.
Internacional
Si
JCR del ISI
Si
Título de la revista
JOURNAL OF MATERIALS CHEMISTRY
ISSN
2050-7488
Factor de impacto JCR
Información de impacto
Volumen
1
DOI
10.1039/c3ta12970e
Número de revista
45
Desde la página
14358
Hasta la página
14367
Mes
SIN MES
Ranking

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Participantes
  • Autor: DAVID CALATAYD ICV-CSIC
  • Autor: TERESA JARDIEL ICV-CSIC
  • Autor: Marco Peiteado Lopez UPM
  • Autor: CRISTINA FERNANDEZ RODRIGUEZ ICV-CSIC
  • Autor: ROCIO E. ESTEVEZ U LAS PALMAS G
  • Autor: JOSE MARIA RODRIGUEZ ULPG
  • Autor: FRANCISCO PALOMARES ICMM-CSIC
  • Autor: FAUSTO RUBIO ICV-CSIC6
  • Autor: DANIEL FERNANDEZ-HEVIA INAEL
  • Autor: Amador Caballero Cuesta UPM

Grupos de investigación, Departamentos, Centros e Institutos de I+D+i relacionados
  • Creador: Grupo de Investigación: Propiedades ópticas, eléctricas y magnéticas de materiales y sus aplicaciones (POEMMA)
  • Centro o Instituto I+D+i: Centro de Materiales y Dispositivos Avanzados para Tecnologías de Información y Comunicaciones
  • Departamento: Física Aplicada a las Tecnologías de la Información