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Dioxygen activation in photooxidation of diphenylmethane by a dioxomolybdenum(VI) complex anchored covalently onto mesoporous titania
Authors:Nelson J. Castellanos  Fernando Martínez  Frédéric Lynen  Shyam Biswas  Pascal Van Der Voort  Henri Arzoumanian
Affiliation:1. Facultad de Química Ambiental, Grupo de Investigaciones Ambientales para el desarrollo Sostenible-GIADS, Universidad Santo Tomas, Campus Universitario Floridablanca, Santander, Colombia
2. Escuela de Química, Centro de Investigación en Catálisis-CICAT, Universidad Industrial de Santander, Km 2 vía El Refugio, Piedecuesta, Santander, Colombia
4. Department of Inorganic and Physical Chemistry, Centre for Ordered Materials, Organometallics and Catalysis-COMOC, University of Ghent, Krijgslaan 281 (S-3), 9000, Ghent, Belgium
3. Laboratory of Separation Sciences, Department of Organic Chemistry, University of Ghent, Krijgslaan 281 (S-4), 9000, Ghent, Belgium
5. Chirosciences UMR CNRS 7313 Institut des Sciences Moléculaires de Marseille (iSm2), Aix-Marseille Université, Campus St Jér?me, 13397, Marseille, France
Abstract:A dioxomolybdenum(VI) complex has been covalently anchored onto mesoporous titania by a silicon-assisted transesterification route. The grafting of the complex to the mesoporous structure was confirmed by diffuse reflectance infrared Fourier transform, Raman and UV–Vis spectroscopy and by nitrogen sorption experiments. The ability of the grafted complex to activate molecular oxygen (O2) has been evaluated in the photooxidation of diphenylmethane to produce benzophenone. The photooxidation of diphenylmethane was monitored continuously by in situ dispersive Raman spectroscopy. A scheme for the activation of molecular oxygen under very mild conditions is proposed. A comparison with the same complex anchored onto commercial titanium P-25 and silica gel revealed both the beneficial effect of the mesoporous structure and the existence of a synergistic effect between MoO/TiO2/O2/light entities, which promotes the photooxidation process under green chemistry conditions. Finally, the heterogeneous catalyst is sustainable; it can be recycled and reused without significant loss in activity or selectivity.
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