Chemical Recycling of Poly(Cyclohexene Carbonate) Using a Di‐Mg II Catalyst

Chemical recycling of polymers to true monomers is pivotal for a circular plastics economy. Here, the first catalyzed chemical recycling of the widely investigated carbon dioxide derived polymer, poly(cyclohexene carbonate), to cyclohexene oxide and carbon dioxide is reported. The reaction requires...

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Veröffentlicht in:Angewandte Chemie International Edition 2022-06, Vol.61 (26)
Hauptverfasser: Singer, Frances N., Deacy, Arron C., McGuire, Thomas M., Williams, Charlotte K., Buchard, Antoine
Format: Artikel
Sprache:eng
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Zusammenfassung:Chemical recycling of polymers to true monomers is pivotal for a circular plastics economy. Here, the first catalyzed chemical recycling of the widely investigated carbon dioxide derived polymer, poly(cyclohexene carbonate), to cyclohexene oxide and carbon dioxide is reported. The reaction requires dinuclear catalysis, with the di‐Mg II catalyst showing both high monomer selectivity (>98 %) and activity (TOF=150 h −1 , 0.33 mol %, 120 °C). The depolymerization occurs via a chain‐end catalyzed depolymerization mechanism and DFT calculations indicate the high selectivity arises from Mg‐alkoxide catalyzed epoxide extrusion being kinetically favorable compared to cyclic carbonate formation.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.202201785