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Mechanistic Insights into the Carbon Dioxide/Cyclohexene Oxide Copolymerization Reaction: Is One Metal Center Enough?

Joan González-FabraFernando Castro-GómezArjan W KleijCarles Bo
Published in: ChemSusChem (2017)
A detailed study on the mechanism for the alternating copolymerization of cyclohexene oxide (CHO) and CO2 mediated by an [Al{amino-tri(phenolate)}]/NBu4 I binary catalyst system was performed by using DFT-based methods. Four potential mechanisms (one monometallic and three bimetallic) were considered for the first propagation cycle of the CHO/CO2 copolymerization. The obtained Gibbs free energies provided a rationale for the relative high activity of a non-covalent dimeric structure formed in situ and thus for the feasibility of a bimetallic mechanism to obtain polycarbonates quantitatively. Gibbs free energies also indicated that the alternating copolymerization was favored over the cyclic carbonate formation.
Keyphrases
  • carbon dioxide
  • density functional theory
  • metal organic framework
  • ionic liquid
  • clinical trial
  • molecular dynamics
  • gold nanoparticles
  • risk assessment
  • human health
  • climate change
  • molecular dynamics simulations