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Controlled, one-pot synthesis of recyclable poly(1,3-diene)-polyester block copolymers, catalyzed by yttrium β-diketiminate complexes. | LitMetric

AI Article Synopsis

  • This study focuses on the one-pot synthesis of block copolymers using rare earth metal catalysts with organoborates to polymerize olefins, 1,3-dienes, and polar monomers like cyclic esters.
  • Researchers synthesized yttrium bis(alkyl) complexes and explored how minor adjustments to the β-diketiminate ligand framework influenced the polymerization process's rate and selectivity.
  • The work successfully introduced new block copolymer morphologies and demonstrated the ability to selectively degrade and recover polymer blocks, showcasing a potential recycling approach for these materials.

Article Abstract

The one-pot synthesis of well-defined block copolymers of olefins/1,3-dienes and polar monomers, such as cyclic esters and acrylates has long been the focus of intense research. Cationic alkyl rare earth metal catalysts, activated by organoborates, have shown to be promising for the polymerization of isoprene or styrene and ε-caprolactone. In this study, we synthesize a series of yttrium bis(alkyl) complexes supported by simple β-diketiminate ancillary ligands. Subtle changes have been made to the β-diketiminate ligand framework to elucidate the effect of ligand structure on the rate and selectivity of olefin/1,3-diene and cyclic ester polymerization, with small ligand changes having a large impact on the resulting polymerizations. Generation of the active cationic species was easily streamlined by identification of appropriate catalyst : organoborate ratios, allowing for high catalyst efficiencies. Notably, we demonstrate the first cationic rare earth metal alkyl-initiated polymerization of δ-valerolactone and ε-decalactone as well as introduced five new block copolymer morphologies. In addition, selective degradation of the ester block in poly(isoprene--caprolactone) enabled recovery of the polyisoprene block with identical spectroscopic and thermal properties. Significantly, recopolymerization of the recovered poly(1,3-diene) with fresh ε-caprolactone reproduced the desired diblocks with nearly identical thermal and physical properties to those of virgin copolymer, illustrating a plausible recycling scheme for these materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400486PMC
http://dx.doi.org/10.1039/d2sc02265fDOI Listing

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