0000000000267424

AUTHOR

Paolo P. Pescarmona

0000-0003-3608-6400

showing 2 related works from this author

Multilayered supported ionic liquids as catalysts for chemical fixation of carbon dioxide

2011

Multilayered, covalently supported ionic liquid phase (mlc-SILP) materials were synthesized by using a new approach based on the grafting of bis-vinylimidazolium salts on different types of silica or polymeric supports. The obtained materials were characterized and tested as catalysts in the reaction of supercritical carbon dioxide with various epoxides to produce cyclic carbonates. The material prepared by supporting a bromide bis-imidazolium salt on the ordered mesoporous silica SBA-15 was identified as the most active catalyst for the synthesis of cyclic carbonates and displayed improved productivity compared with known supported ionic liquid catalysts. The catalyst retained its high act…

Vinyl CompoundsMaterials scienceGeneral Chemical EngineeringCatalyst supportIndustrial catalystsInorganic chemistryCarbonatesIonic LiquidsHeterogeneous catalysisCatalysisCatalysischemistry.chemical_compoundsupercritical carbon dioxideEnvironmental ChemistryGeneral Materials ScienceSupported ionic liquidSupercritical carbon dioxidecarbonate synthesiImidazolesSettore CHIM/06 - Chimica OrganicaCarbon DioxideMesoporous silicaSupercritical fluidGeneral EnergychemistryIonic liquidEpoxy CompoundsChemSusChem
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Synthesis and high-throughput testing of multilayered supported ionic liquid catalysts for the conversion of CO2 and epoxides into cyclic carbonates

2014

Multilayered covalently supported ionic liquid phase (mlc-SILP) materials were synthesised by grafting different bis-vinylimidazolium salts on thiol-functionalised silica. These materials, which contain a cross-linked oligomeric network of imidazolium units, were characterised and tested as catalysts for the reaction of carbon dioxide with various epoxides to produce cyclic carbonates. The materials prepared by supporting a bis-imidazolium iodide salt with xylene or octane as a linker between the imidazolium units were identified as the most active catalysts and displayed high turnover numbers and improved productivity compared to known supported ionic liquid catalysts. The most promising m…

XyleneSettore CHIM/06 - Chimica OrganicaIonic liquidGraftingCatalysisCycloadditionCatalysischemistry.chemical_compoundcyclic carbonatechemistryChemical engineeringCovalent bondPhase (matter)Ionic liquidOrganic chemistryCO2Octane
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