Reconstruction of the ZnAl Mixed Oxides Into the Layered Double Hydroxide Catalysts Active in the Aldol Condensation of Furfural: The Role of ZnO Particles

A memory effect is the ability to restore the original, lamellar layered double hydroxide structure. Herein, we have described 1) the changes in the structural and basic properties of ZnAl mixed oxides during their transformation into ZnAl-reconstructed LDHs (RE-LDHs); 2) the extraordinary propertie...

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Veröffentlicht in:Frontiers in chemistry 2022-01, Vol.9, p.803764-803764
Hauptverfasser: Dubnová, Lada, Daňhel, Rostislav, Meinhardová, Vendula, Korolova, Valeriia, Smoláková, Lucie, Kondratowicz, Tomasz, Kikhtyanin, Oleg, Čapek, Libor
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Sprache:eng
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Zusammenfassung:A memory effect is the ability to restore the original, lamellar layered double hydroxide structure. Herein, we have described 1) the changes in the structural and basic properties of ZnAl mixed oxides during their transformation into ZnAl-reconstructed LDHs (RE-LDHs); 2) the extraordinary properties of ZnAl RE-LDHs compared to the original ZnAl LDHs; and 3) the changes of basic properties during the interaction of ZnAl RE-LDHs with atmospheric CO . Aldol condensation was selected as probe reaction to prove the catalytic potential of ZnAl RE-LDHs. We have described a target method for preparing ZnAl RE-LDHs with a large number of basic sites. ZnAl RE-LDHs possess significantly higher furfural conversion in the aldol condensation of furfural than MOs. The structural, textural, and basic properties of the studied materials were described by temperature-programmed analysis, X-ray diffraction, N adsorption, temperature-programmed desorption of CO , and diffuse reflectance spectroscopy.
ISSN:2296-2646
2296-2646
DOI:10.3389/fchem.2021.803764