CINDECA   05422
CENTRO DE INVESTIGACION Y DESARROLLO EN CIENCIAS APLICADAS "DR. JORGE J. RONCO"
Unidad Ejecutora - UE
artículos
Título:
Novel (NH4)4[NiMo6O24H6]·5H2O ? TiO2 composite system: Photooxidation of toluene under UV and sunlight-type illumination
Autor/es:
MARIO J. MUÑOZ-BATISTA; RAFAEL LUQUE; MARCOS FERNÁNDEZ-GARCÍA; GUILLERMO R. BERTOLINI; ENRIQUE RODRÍGUEZ-CASTELLÓN; CARMEN I. CABELLO; ANNA KUBACKA
Revista:
APPLIED CATALYSIS B-ENVIRONMENTAL
Editorial:
ELSEVIER SCIENCE BV
Referencias:
Lugar: Amsterdam; Año: 2018 vol. 238 p. 381 - 392
ISSN:
0926-3373
Resumen:
A series of composite materials based on titania and growing quantities of the (NH4)4[NiMo6O24H6]?5H2O heteropolyacid (NiMo6 HPA) was tested in the gas-phase toluene photo-oxidation reaction. Materials were characterized with the help of chemical analysis, X-ray diffraction, porosimetry, electron transmission and scanning microscopies, as well as X-ray photoelectron and UV?visible diffuse-reflectance spectroscopies. Photo activity performance was assessed under UV and sunlight-type illumination condition sthrough the calculation of the true quantum efficiency to measure activity as well as the analysis of the selectivity of the reaction. The composite system having a 3wt. % of the NiMo6 component presents improved performance with respect to well defined titania references (parent nanosized anatase or P25) under all illumination conditions tested. The characterization of the solids indicates that the NiMo6 component supported on titania suffers a significant modification of its physico-chemical properties as a function of the loading of the composite system. Such modification appears as a consequence of the interface interaction between the components of the composite system. An electron paramagnetic resonance study of the radical species formed under illumination shows that charge handling through the NiMo6 ? TiO2 interface controls the photo-catalytic properties.NiMo Anderson Anatase UV Sunlight Toluene Quantum efficiency