Artículo
Highly Ordered, Accessible and Nanocrystalline Mesoporous TiO 2 Thin Films on Transparent Conductive Substrates
Violi, Ianina Lucila
; Perez, Maria Dolores
; Fuertes, María Cecilia
; Soler Illia, Galo Juan de Avila Arturo
; Perez, Maria Dolores
; Fuertes, María Cecilia
; Soler Illia, Galo Juan de Avila Arturo
Fecha de publicación:
07/2012
Editorial:
American Chemical Society
Revista:
ACS Applied Materials & Interfaces
ISSN:
1944-8244
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Highly porous (Vmesopore = 25-50%) and ordered mesoporous titania thin films (MTTF) were prepared on ITO(indium tin oxide)-covered glass by a fast two-step method. The effects of substrate surface modification and thermal treatment on pore order, accessibility and crystallinity of the MTTF were systematically studied for MTTF deposited onto bare and titania modified ITO. MTTF exposed briefly to 550 °C resulted in highly ordered films with grid-like structures, enlarged pore size, and increased accessible pore volume when prepared onto the modified ITO substrate. Mesostructure collapse and no significant change in pore volume were observed for MTTF deposited on bare ITO substrates. Highly crystalline anatase was obtained for MTTF prepared on the modified-ITO treated at high temperatures, establishing the relationship between grid-like structures and titania crystallization. Photocatalytic activity was maximized for samples with increased crystallization and high accessible pore volume. In this manner, a simple way of designing materials with optimized characteristics for optoelectronic applications was achieved through the modification of the ITO surface and a controlled thermal treatment.
Palabras clave:
TITANIA
,
SOL-GEL
,
OPTOELECTRONIC
,
PHOTOCATALYSIS
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Licencia
Identificadores
Colecciones
Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Articulos de SEDE CENTRAL
Citación
Violi, Ianina Lucila; Perez, Maria Dolores; Fuertes, María Cecilia; Soler Illia, Galo Juan de Avila Arturo; Highly Ordered, Accessible and Nanocrystalline Mesoporous TiO 2 Thin Films on Transparent Conductive Substrates; American Chemical Society; ACS Applied Materials & Interfaces; 4; 8; 7-2012; 4320-4330
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