The oxidation of trans-ferulic acid (C10H10O4) in aqueous TiO2 dispersion occurs via the formation of a charge-transfer complex on the TiO2 surface that is able to absorb visible light (k P 400 nm). The main product is CO2, whereas secondary oxidation products are organic species such as vanillin, caffeic acid, homovanillic acid, and vanillylmandelic acid. Oxidation through the formation of a charge-transfer complex occurs only in the presence of specific TiO2 samples. Experiments in the absence of oxygen, in the presence of bromate ions and by using a phosphate-modified TiO2, have been carried out for investigating the reaction mechanism. In order to study the interaction between trans-ferulic acid and TiO2 surface and to characterize the charge-transfer complex, UV–Vis diffuse reflectance and FT-IR spectroscopies have been used. FT-IR characterization of TiO2 samples in contact with the aqueous trans-ferulic acid solution indicates that the charge-transfer complex formation occurs via adsorption of bidentate ferulate species

Ferulic Acid Oxidation Through Visible Light Induced TiO2 Photocatalysis / Parrino, F; Augugliaro, V; Camera Roda, G; Loddo, V; Palmisano, G; Palmisano, L; Puma, M A. - 295:(2012), pp. 254-260. ( 19th International Conference on Photochemical Conversion and Storage of Solar Energy Caltech in Pasadena, California 29 July - 3 August 2012) [10.1016/j.jcat.2012.08.018].

Ferulic Acid Oxidation Through Visible Light Induced TiO2 Photocatalysis

Parrino F;
2012-01-01

Abstract

The oxidation of trans-ferulic acid (C10H10O4) in aqueous TiO2 dispersion occurs via the formation of a charge-transfer complex on the TiO2 surface that is able to absorb visible light (k P 400 nm). The main product is CO2, whereas secondary oxidation products are organic species such as vanillin, caffeic acid, homovanillic acid, and vanillylmandelic acid. Oxidation through the formation of a charge-transfer complex occurs only in the presence of specific TiO2 samples. Experiments in the absence of oxygen, in the presence of bromate ions and by using a phosphate-modified TiO2, have been carried out for investigating the reaction mechanism. In order to study the interaction between trans-ferulic acid and TiO2 surface and to characterize the charge-transfer complex, UV–Vis diffuse reflectance and FT-IR spectroscopies have been used. FT-IR characterization of TiO2 samples in contact with the aqueous trans-ferulic acid solution indicates that the charge-transfer complex formation occurs via adsorption of bidentate ferulate species
2012
19th International Conference on Photochemical Conversion and Storage of Solar Energy (IPS-19) - Proceedings
San Diego, USA
Elsevier Inc.
Parrino, F; Augugliaro, V; Camera Roda, G; Loddo, V; Palmisano, G; Palmisano, L; Puma, M A
Ferulic Acid Oxidation Through Visible Light Induced TiO2 Photocatalysis / Parrino, F; Augugliaro, V; Camera Roda, G; Loddo, V; Palmisano, G; Palmisano, L; Puma, M A. - 295:(2012), pp. 254-260. ( 19th International Conference on Photochemical Conversion and Storage of Solar Energy Caltech in Pasadena, California 29 July - 3 August 2012) [10.1016/j.jcat.2012.08.018].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/277212
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