0000000000350753

AUTHOR

Stefanie Stutzmann

showing 3 related works from this author

Ionic Liquids: Media for Better Molecular Catalysis

2004

Ionic liquids (ILs) are more and more suggested as substitutes for traditional solvents in organic synthesis and catalysis. They are suitable candidates for the dissolution of ionic complexes. They can activate and retain them in a polar state: in fact, they act as sequestrands, opening the route to two-phase processes and easier catalyst recovery. This paper reviews authors' results with the development of new syntheses of ILs and applications in carbon–carbon bond formation (dimerisation of methyl acrylate) and redistribution (ring closing metathesis) reactions using ionic precatalysts.

Ionic bondingGeneral MedicineGeneral ChemistryCombinatorial chemistryCatalysisCatalysischemistry.chemical_compoundRing-closing metathesischemistryIonic liquidOrganic chemistryRedistribution (chemistry)Organic synthesisMethyl acrylateDissolutionTopics in Catalysis
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Biphasic dimerisation of methylacrylate--immobilisation and stabilisation of cationic Pd-catalysts in ionic liquids by an ammoniumphosphine ligand.

2002

The first continuous, biphasic, Pd-catalysed dimerisation of methylacrylate is described. The biphasic system has been realised by using a tetrafluoroborate ionic liquid as catalyst medium and an ammoniumphosphine ligand to immobilise and stabilise the Pd-catalyst.

TetrafluoroborateLigandInorganic chemistryMetals and AlloysCationic polymerizationGeneral ChemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCatalysischemistry.chemical_compoundchemistryIonic liquidMaterials ChemistryCeramics and CompositesChemical communications (Cambridge, England)
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Selective palladium-catalysed dimerisation of methyl acrylate in ionic liquids: towards a continuous processThis work was presented at the Green Solv…

2003

The activity and stability of cationic palladium complexes [Pd(PBu3)2S2]2+ used for the selective tail-to-tail dimerisation of methyl acrylate are significantly improved with the utilisation of ionic liquids like [BMIM][BF4] or the protonated N-butyl-imidazole, [HBIM][BF4]. Problems related to product inhibition and catalyst recycling are overcome by running the reaction in a two-phase mode, toluene being used as extractant. Catalyst stabilisation is further improved by trapping the ancillary ligand into the ionic liquid with an ionic tail: with the use of 1-dibutylphosphino-2-dimethylaminoethane, the catalyst is stable for more than 100 h, therefore demonstrating the feasibility of a conti…

LigandInorganic chemistryCationic polymerizationchemistry.chemical_elementIonic bondingPollutionTolueneCatalysischemistry.chemical_compoundchemistryIonic liquidPolymer chemistryEnvironmental ChemistryMethyl acrylatePalladiumGreen Chemistry
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