4.8 Article

Fast and selective ring-opening polymerizations by alkoxides and thioureas

Journal

NATURE CHEMISTRY
Volume 8, Issue 11, Pages 1047-1053

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NCHEM.2574

Keywords

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Funding

  1. National Science Foundation [NSF-CHE-1306730]
  2. Division Of Chemistry
  3. Direct For Mathematical & Physical Scien [1306730, 1607092] Funding Source: National Science Foundation

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Ring-opening polymerization of lactones is a versatile approach to generate well-defined functional polyesters. Typical ring-opening catalysts are subject to a trade-off between rate and selectivity. Here we describe an effective catalytic system combining alkoxides with thioureas that catalyses rapid and selective ring-opening polymerizations. Deprotonation of thioureas by sodium, potassium or imidazolium alkoxides generates a hydrogen-bonded alcohol adduct of the thiourea anion (thioimidate). The ring-opening polymerization of L-lactide mediated by these alcohol-bonded thioimidates yields highly isotactic polylactide with fast kinetics and living polymerization behaviour, as evidenced by narrow molecular weight distributions (M-w/M-n < 1.1), chain extension experiments and minimal transesterifications. Computational studies indicate a bifunctional catalytic mechanism whereby the thioimidate activates the carbonyl of the monomer and the alcohol initiator/chain end to effect the selective ring-opening of lactones and carbonates. The high selectivity of the catalyst towards monomer propagation over transesterification is attributed to a selective activation of monomer over polymer chains.

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