Publication | Closed Access
Polymelamine Formaldehyde-Coated MIL-101 as an Efficient Dual-Functional Core–Shell Composite to Catalyze the Deacetalization–Knoevenagel Tandem Reaction
13
Citations
35
References
2022
Year
EngineeringPorous PolymerOrganic ChemistryPolymelamine Formaldehyde-coated Mil-101ChemistryPolymelamine FormaldehydeDeacetalization–knoevenagel Tandem ReactionPolymersChemical EngineeringLewis AcidOrganometallic CatalysisMetal-organic PolyhedronHybrid MaterialsPolymer ChemistryIndustrial CatalysisCovalent Bonded FrameworkCatalysisMetal-organic FrameworksCatalytic SynthesisPorous Organic PolymerPolymer ScienceFunctional MaterialsOrganic-inorganic Hybrid Material
Porous organic polymer (POP) coated on a metal-organic framework (MOF) has the functions and advantages of MOF and POP at the same time and has excellent catalytic ability. In this study, an efficient dual-functional core-shell composite MOF@POP with Lewis acid and Brønsted base sites was synthesized using the impregnation method in which MIL-101(Cr) was the core component and polymelamine formaldehyde (PMF) was the shell component. Most importantly, the obtained MIL-101(Cr)@PMF showed perfect catalytic activity in the deacetalization-Knoevenagel tandem reaction. In addition, it could still maintain ultrahigh physical and chemical stability.
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