Anna Wojtaszek-Gurdak, Katarzyna Stawicka, Michał Zieliński, Maciej Trejda
Mixed La–Zn, La–Nb, and Zn–Nb oxides were synthesized by mechanical mixing followed by calcination and characterized by XRD, TGA/DTA, UV–Vis, and FT-IR spectroscopy. The analyses confirmed the formation of mixed oxide systems with strong interactions between the component oxides. Acid–base properties determined by NH 3 -TPD and CO 2 -TPD showed that the LaZnO x (1:1) sample possesses the highest concentration of surface active sites and a balanced acid–base character. Catalytic activity was evaluated in the solvent-free Claisen–Schmidt condensation of benzaldehyde with acetophenone. Mixed oxides exhibited higher activity than the corresponding single oxides, with LaZnO x (1:1) achieving the highest chalcone yield (85% after 4 h of reaction) and excellent stability upon reuse. The superior performance of LaZnO x (1:1) is attributed to the synergistic interaction between La 3 + and Zn 2+ species, which generate cooperative acid–base sites on the surface. These results demonstrate the potential of LaZnO x mixed oxides as efficient and reusable bifunctional catalysts.