4.8 Article

Ketyl Radical Anion Mediated Radical Polymerization and Anionic Ring-Opening Polymerization to Give Polymers with Low Molecular Weight Distribution

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WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202304033

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Anionic Ring-Opening Polymerization; Cyclopentane Derivates; Ketyl Radical Anion; Narrow Molecular Weight Distribution; Radical Polymerization

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A novel Ketyl Mediated Polymerization (KMP) is developed by introducing ketyl radical anion species, which enables radical polymerization at the carbon radical site and anionic ring-opening polymerization at the oxygen anion site. Through KMP, organic synthesis and polymerization can be achieved simultaneously in one pot, resulting in the successful preparation of small molecules and polymers with low molecular weight distribution. This work expands the reaction mode and method libraries of organic chemistry and polymer chemistry, saving time, labor, resources, and energy.
The development of novel polymerization capable of yielding polymers with low molecular weight distribution (D) is essential and significant in polymer chemistry, where monofunctional initiator contains only one initiation site in these polymerizations generally. Here, ketyl radical anion species is introduced to develop a novel Ketyl Mediated Polymerization (KMP), which enables radical polymerization at carbon radical site and anionic ring-opening polymerization at oxygen anion site, respectively. Meanwhile, polymerization and corresponding organic synthesis generally couldn't be performed simultaneously in one pot. Through KMP, organic synthesis and polymerization are achieved in one pot, where small molecules (cyclopentane derivates) and polymers with low D are successfully prepared under mild condition simultaneously. At the initiation step, both organic synthesis and polymerization are initiated by single electron transfer reaction with ketyl radical anion formation. Cyclopentane derivates are synthesized through 3-3 coupling reaction and cyclization. Polystyrene and polycaprolactone with low D and a full monomer conversion are prepared by KMP via radical polymerization and anionic ring-opening polymerization, respectively. This work therefore enables both organic synthesis and two different polymerizations from same initiation system, which saves time, labour, resource and energy and expands the reaction mode and method libraries of organic chemistry and polymer chemistry.

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