Investigations into Apopinene as a Biorenewable Monomer for Ring-Opening Metathesis Polymerization
Benjamin F. Strick, Massimiliano Delferro, Franz M. Geiger, Regan J. Thomson
Abstract
Benjamin F. Strick, Massimiliano Delferro, Franz M. Geiger, Regan J. Thomson
Abstract
The ring-opening metathesis polymerization (ROMP) of apopinene is reported. We find that apopinene reacts with Ru-based metathesis catalysts to provide an all trans -polymer with a polydispersity index (PDI) as low as 1.6 and molecular weights in the 1100 to 15 600 g·mol –1 range (9–127 monomer units). Because apopinene is readily prepared in one-step from myrtenal or two-steps from α-pinene, both of which are commercially available and naturally abundant, these studies indicate that apopinene might find future use as a new biorenewable precursor for the sustainable production of ROMP-based materials.
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The ring-opening metathesis polymerization (ROMP) of apopinene is reported. We find that apopinene reacts with Ru-based metathesis catalysts to provide an all trans -polymer with a polydispersity index (PDI) as low as 1.6 and molecular weights in the 1100 to 15 600 g·mol –1 range (9–127 monomer units). Because apopinene is readily prepared in one-step from myrtenal or two-steps from α-pinene, both of which are commercially available and naturally abundant, these studies indicate that apopinene might find future use as a new biorenewable precursor for the sustainable production of ROMP-based materials.
Key concepts: ROMP, Ring-opening metathesis polymerisation, Dispersity, Metathesis, Monomer, Polymerization, Polymer, Chemistry