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1.
Angew Chem Int Ed Engl ; 54(6): 1897-900, 2015 Feb 02.
Article in English | MEDLINE | ID: mdl-25521866

ABSTRACT

Heterogeneous ReOx-Pd/CeO2 catalyst showed excellent performance for simultaneous hydrodeoxygenation of vicinal OH groups. High yield (>99%), turnover frequency (300 h(-1)), and turnover number (10,000) are achieved in the reaction of 1,4-anhydroerythritol to tetrahydrofuran. This catalyst can be applied to sugar alcohols, and mono-alcohols and diols are obtained in high yields (≥85%) from substrates with even and odd numbers of OH groups, respectively. The high catalytic performance of ReOx-Pd/CeO2 can be assigned to rhenium species with +4 or +5 valence state, and the formation of this species is promoted by H2/Pd and the ceria support.


Subject(s)
Cerium/chemistry , Hydrogen/chemistry , Hydroxyl Radical/chemistry , Oxygen/chemistry , Palladium/chemistry , Rhenium/chemistry , Catalysis , Oxidation-Reduction
2.
ChemSusChem ; 7(8): 2185-92, 2014 Aug.
Article in English | MEDLINE | ID: mdl-24974957

ABSTRACT

Hydrodeoxygenation of cyclic vicinal diols such as 1,4-anhydroerythritol was conducted over catalysts containing both a noble metal and a group 5-7 transition-metal oxide. The combination of Pd and WOx allowed the removal of one of the two OH groups selectively. 3-Hydroxytetrahydrofuran was obtained from 1,4-anhydroerythritol in 72 and 74% yield over WOx -Pd/C and WOx -Pd/ZrO2 , respectively. The WOx -Pd/ZrO2 catalyst was reusable without significant loss of activity if the catalyst was calcined as a method of regeneration. Characterization of WOx -Pd/C with temperature-programmed reduction, X-ray diffraction, and transmission electron microscopy/energy-dispersive X-ray spectroscopy suggested that Pd metal particles approximately 9 nm in size were formed on amorphous tungsten oxide particles. A reaction mechanism was proposed on the basis of kinetics, reaction results with tungsten oxides under an atmosphere of Ar, and density functional theory calculations. A tetravalent tungsten center (W(IV) ) was formed by reduction of WO3 with the Pd catalyst and H2 , and this center served as the reductant for partial hydrodeoxygenation.


Subject(s)
Alcohols/chemistry , Oxides/chemistry , Oxygen/chemistry , Palladium/chemistry , Tungsten/chemistry , Catalysis , Models, Molecular , Molecular Conformation , Quantum Theory
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