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Electropolymerization of chiral chromium–salen complexes: new materials for heterogeneous asymmetric catalysis
24
Citations
51
References
2012
Year
EngineeringOrganometallic ElectrochemistryChemistryPolymersChiral Chromium–salen ComplexesChemical EngineeringOrganic ElectrochemistryRedox Polymer PropertiesHomogeneous CatalysisPolymer ChemistryMaterials ScienceInorganic ChemistryElectrode SurfaceElectrochemical OxidationCatalysisAsymmetric CatalysisElectrochemistryElectrosynthesisHeterogeneous Asymmetric CatalysisNew Materials
Electrochemical oxidation is described as a very efficient polymerization procedure for the heterogenization of metallic chiral catalysts. From chromium chiral complexes based on salen–thiophene ligands, this methodology provided an efficient access to various polymers. Recovered as insoluble powders, these materials were tested in different enantioselective heterogeneous catalytic reactions. Structural modifications were introduced on the salen core in order to evaluate their influence on redox polymer properties and on the enantioselectivity of the catalysis. Electrochemical experiments showed the particular stability of these deposited materials at the electrode surface and SEM analyses suggested the influence of the electropolymerization conditions on their morphology.
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