Solvated platinum atoms, obtained by metal vapour synthesis (MVS), were conveniently used to prepare gamma-iron oxide and gamma-alumina supported Pt catalysts containing small metal nanoparticles of controlled size, ranging 0.5-3.0 nm in diameter (HR-TEM). The gamma-Fe2O3-supported Pt system showed higher catalytic activity and selectivity than those of a similarly prepared gamma-Al2O3-supported system in the selective hydrogenation reactions of p- and o-chloronitrobenzene to the corresponding haloanilines, in mild reaction conditions (25 degrees C, 0.1 MPa hydrogen pressure) (p-chloronitrobenzene: specific activity (SA) = 59.5 min(-1), Selectivity (Sel.) = 99.9%; o-chloronitrobenzene: SA = 42.8 min(-1), Sel. = 99.2%). The Pt/gamma-Fe2O3 system also showed high catalytic efficiency (Sel. > 98%, at 100% of conversion) in the selective hydrogenations of m-chloro-, p- and o-bromo- and p- and o-iodonitrobenzenes. XPS structural studies performed on a pristine Pt/gamma-Fe2O3 sample as well as on a sample recovered after the reaction, indicate that the catalytic process did not induce permanent modification in the chemical and/or electronic structure of the catalyst according with the high reusability of the system.

Chemoselective hydrogenation of halonitroaromatics over gamma-Fe2O3-supported platinum nanoparticles: The role of the support on their catalytic activity and selectivity

BOTAVINA, Maria;MARTRA, Gianmario;
2013-01-01

Abstract

Solvated platinum atoms, obtained by metal vapour synthesis (MVS), were conveniently used to prepare gamma-iron oxide and gamma-alumina supported Pt catalysts containing small metal nanoparticles of controlled size, ranging 0.5-3.0 nm in diameter (HR-TEM). The gamma-Fe2O3-supported Pt system showed higher catalytic activity and selectivity than those of a similarly prepared gamma-Al2O3-supported system in the selective hydrogenation reactions of p- and o-chloronitrobenzene to the corresponding haloanilines, in mild reaction conditions (25 degrees C, 0.1 MPa hydrogen pressure) (p-chloronitrobenzene: specific activity (SA) = 59.5 min(-1), Selectivity (Sel.) = 99.9%; o-chloronitrobenzene: SA = 42.8 min(-1), Sel. = 99.2%). The Pt/gamma-Fe2O3 system also showed high catalytic efficiency (Sel. > 98%, at 100% of conversion) in the selective hydrogenations of m-chloro-, p- and o-bromo- and p- and o-iodonitrobenzenes. XPS structural studies performed on a pristine Pt/gamma-Fe2O3 sample as well as on a sample recovered after the reaction, indicate that the catalytic process did not induce permanent modification in the chemical and/or electronic structure of the catalyst according with the high reusability of the system.
2013
366
288
293
http://ac.els-cdn.com/S138111691200338X/1-s2.0-S138111691200338X-main.pdf?_tid=0de91040-61ae-11e3-8070-00000aab0f01&acdnat=1386688773_801551f1e9cec0e0382b84c087d6f6ed
Platinum catalyst, Iron oxide, Hydrogenation, Halonitrobenzenes, Metal vapour synthesis
C. Evangelisti; L.A. Aronica; M. Botavina; G. Martra; C. Battocchio; G. Polzonetti
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/140589
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