Efect of Ti F surface interaction on the photocatalytic degradation of phenol, aniline and formic acid

A study is undertaken of the effect of fluorinating two TiO2 catalysts, both with the same surface area but one composed only of pure anatase phase (SA) and the other of mixed anatase and rutile phases (P25), on the degradation of phenol, formic acid and aniline. The catalysts were characterised by...

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Veröffentlicht in:Journal of photochemistry and photobiology. A, Chemistry. Chemistry., 2017-11, Vol.348, p.139-149
Hauptverfasser: El-Alami, W., Sousa, D. Garzón, Rodríguez, C. Fernández, Díaz, O. González, Rodríguez, J.M. Doña, El Azzouzi, M., Araña, J.
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Sprache:eng
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Zusammenfassung:A study is undertaken of the effect of fluorinating two TiO2 catalysts, both with the same surface area but one composed only of pure anatase phase (SA) and the other of mixed anatase and rutile phases (P25), on the degradation of phenol, formic acid and aniline. The catalysts were characterised by FTIR, BET, EDAXs, SEM, XRD and DRS-UV-vis studies. The method used for synthesis of the F-P25 and F-SA resulted in fluorinated catalysts with properties different to those of other fluorinated catalysts reported in the bibliography. The results obtained show that, unlike other studies in which the formation of free hydroxyl radicals (radical dotOHfree) was enhanced with the fluorinated catalysts, in the F-P25 and F-SA catalysts it was the formation of surface hydroxyl radicals (radical dotOHsurf) which was significantly enhanced. In this way, the F-P25 and F-SA catalysts gave rise to higher degradation rate constants of phenol (kphenol), aniline (kaniline) and formic acid (kformic) than the P25 and SA catalysts.
ISSN:1010-6030
1873-2666
DOI:10.1016/j.jphotochem.2017.08.010