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Lithium Half‐Salen Complexes: Synthesis, Structural Characterization and Studies as Catalysts for rac‐Lactide Ring‐Opening Polymerization

Authors :
Jennifer A. Garden
Gary S. Nichol
Yali Zhou
Source :
Zhou, Y, Nichol, G S & Garden, J A 2021, ' Lithium Half-Salen Complexes: Synthesis, Structural Characterization and Studies as Catalysts for rac -Lactide Ring-Opening Polymerization ', European Journal of Organic Chemistry, vol. 2021, no. 40, pp. 5557-5568 . https://doi.org/10.1002/ejoc.202100981
Publication Year :
2021

Abstract

Seven lithium complexes supported by sterically and electronically diverse phenoxyimine ligands were synthesized and characterized by X-ray diffraction, NMR spectroscopy and elemental microanalysis. These complexes show high activity (kobs ≤7.43×10−2 s−1) for rac-lactide ring-opening polymerization (ROP) in the presence of co-initiator benzyl alcohol (BnOH), with the exception of Li4 which features an unusual polymeric ladder structure. Overall, the catalyst activity correlates to the aggregation state; the catalysts with low aggregation states display increased propagation rates attributed to improved metal accessibility and kinetic mobility. The nature of the ligand substituents and solvent influence the catalyst aggregation in both the solid- and solution-state. While the lithium complexes can initiate rac-lactide ROP without BnOH, the addition of this co-initiator significantly increases the polymerization rate by switching the mechanism from a coordination-insertion to an activated monomer pathway, changing the resultant poly(lactic acid) architecture from cyclic to linear.

Details

Language :
English
Database :
OpenAIRE
Journal :
Zhou, Y, Nichol, G S & Garden, J A 2021, ' Lithium Half-Salen Complexes: Synthesis, Structural Characterization and Studies as Catalysts for rac -Lactide Ring-Opening Polymerization ', European Journal of Organic Chemistry, vol. 2021, no. 40, pp. 5557-5568 . https://doi.org/10.1002/ejoc.202100981
Accession number :
edsair.doi.dedup.....9c895e9a77d94f1c0074576a7a08044a