A sustainable and scalable one-pot impregnation protocol, avoiding high-temperature calcination/activation, was employed to prepare Pd/Al O (0.24 wt%), Pd/TiO (0.18 wt%), Pd/ZrO (0.21 wt%), Pd/SiO (0.37 wt%), Rh/Al O (0.18 wt%), and Rh/TiO (0.15 wt%). Support effects on activity, selectivity, and recyclability of these low-metal content heterogeneous catalysts were investigated, using (E) cinnamaldehyde and levulinic acid as probe molecules. In cinnamaldehyde hydrogenation, Pd catalysts were highly effective for chemoselective C=C reduction to 3-phenylpropanal under mild conditions, with Pd/TiO displaying the highest activity and robust performance over several recycles. However, the Lewis acidity of TiO promoted a solvent-involving side reaction in 2-propanol, with hemiacetal and ether formation, highlighting that apparent selectivity is strongly shaped by support acidity and product residence time. Rh/Al O exhibited lower activity than Pd analogues but near-quantitative selectivity to the saturated aldehyde, whereas Rh/TiO again favored hemiacetal formation. In levulinic acid hydrogenation, Pd catalysts were essentially inactive toward ketone hydrogenation even at elevated temperature and H pressure, while Rh catalysts achieved high productivity with exclusive formation of -valerolactone, Rh/Al O being the most active at comparatively mild pressures.
Support Effects in Hydrogenation Catalysis Using Low-Loading Pd and Rh Catalysts
Paganelli, Stefano
Conceptualization
;Piccolo, OresteConceptualization
;Scarpa, LudovicoInvestigation
;
2026
Abstract
A sustainable and scalable one-pot impregnation protocol, avoiding high-temperature calcination/activation, was employed to prepare Pd/Al O (0.24 wt%), Pd/TiO (0.18 wt%), Pd/ZrO (0.21 wt%), Pd/SiO (0.37 wt%), Rh/Al O (0.18 wt%), and Rh/TiO (0.15 wt%). Support effects on activity, selectivity, and recyclability of these low-metal content heterogeneous catalysts were investigated, using (E) cinnamaldehyde and levulinic acid as probe molecules. In cinnamaldehyde hydrogenation, Pd catalysts were highly effective for chemoselective C=C reduction to 3-phenylpropanal under mild conditions, with Pd/TiO displaying the highest activity and robust performance over several recycles. However, the Lewis acidity of TiO promoted a solvent-involving side reaction in 2-propanol, with hemiacetal and ether formation, highlighting that apparent selectivity is strongly shaped by support acidity and product residence time. Rh/Al O exhibited lower activity than Pd analogues but near-quantitative selectivity to the saturated aldehyde, whereas Rh/TiO again favored hemiacetal formation. In levulinic acid hydrogenation, Pd catalysts were essentially inactive toward ketone hydrogenation even at elevated temperature and H pressure, while Rh catalysts achieved high productivity with exclusive formation of -valerolactone, Rh/Al O being the most active at comparatively mild pressures.| File | Dimensione | Formato | |
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