The influence of organosuperbases on the structure and activity of dialkylgallium alkoxides in the polymerization of rac‐lactide: the road to stereo diblock PLA copolymers

Paweł Horeglad, Anna Litwińska, Grażyna Z. Żukowska, Dominik Kubicki, Grzegorz Szczepaniak, Maciej Dranka, Janusz Zachara

Applied Organometallic Chemistry · 2013 · 10.1002/aoc.2978

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Abstract

Stereoselective polymerization of rac‐lactide is one of the most important issues as the properties of polylactide (PLA) depend strongly on its tacticity. There is, however, a paucity of catalysts that allow for easy switching between heteroselectivity and isoselectivity, which limits the synthesis of stereo copolymers of PLA and modification of polylactide properties. Dialkylgallium alkoxides activated by organosuperbases have been used as catalysts in the ring‐opening polymerization of racemic lactide (rac‐LA). The reaction of (S,S)‐[Me2Ga(μ‐OCH(Me)CO2Me)]2 (1) with 1,8‐diazabicyclo[5.4.0]undec‐7‐ene (DBU) or 7‐methyl‐1,5,7‐triazabicyclo[4.4.0]dec‐5‐ene (MTBD) resulted in the formation of isoselective gallium species, highly active in the polymerization of rac‐LA. DOSY (diffusion‐ordered spectroscopy) NMR was indicative for the presence of dimeric gallium species. However, the structure of model monomeric gallium alkoxide Me2Ga(ON) (where ON is monoanionic bidentate ligand possessing organosuperbase functionality) shows that the presence of an organosuperbase may substantially weaken Ga−Oalkoxide−Ga bridges. The facile switch of stereoselectivity upon addition of organosuperbase to nonselective/heteroselective 1 allowed for the first time the synthesis of diblock polylactide comprised of isotactically and heterotactically enriched blocks. Copyright © 2013 John Wiley & Sons, Ltd.

★ 3.0 1 rating
5 : Major extension (new functional group)
4 : Minor extension (no new functional group)
3 : Reproduced as published ×1
2 : Reproduced with deviation
1 : Did not work
: Extension failed / Inconclusive

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PhD student
16 Jul 2026
★ 3 : Reproduced as published