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Unraveling the role of low coordination sites in a Cu metal nanoparticle: a step forwards the selective synthesis of second generation biofuels

Academic Article
Publication Date:
2014
abstract:
The acidity of a prereduced Cu/SiO2 catalyst was extensively investigated by means of FT-IR of adsorbed pyridine and by titrn. with 2-phenylethylamine in cyclohexane. Comparison with the parent CuO/SiO2 material, which was already shown to exhibit Lewis acid sites due to the high dispersion of the CuO phase, provided evidence that redn. of this phase to the metallic state increases the acidity of the material. This allowed to set up a bifunctional catalyst showing acidic and hydrogenation activity, both ascribable to the presence of the metal particle, without the need of an acidic support. This catalyst was tested in the one-pot transformation of ?-valerolactone into pentyl valerate and showed comparable activity (91 vs. 92% conversion) and improved selectivity (92 vs. 72%) with respect to the previously reported copper catalyst supported on acidic material. The role of Cu in activating the substrate was also evidenced through FTIRa of adsorbed ?-valerolactone.
Iris type:
01.01 Articolo in rivista
Keywords:
gamma-valerolactone; pentil valerate; bifunctional catalysts
List of contributors:
Evangelisti, Claudio; Scotti, Nicola; Dangate, Milind; Zaccheria, Federica; Ravasio, MARIA NICOLETTA
Authors of the University:
EVANGELISTI CLAUDIO
SCOTTI NICOLA
ZACCHERIA FEDERICA
Handle:
https://iris.cnr.it/handle/20.500.14243/222226
Published in:
ACS CATALYSIS
Journal
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