Ring-opening metathesis polymerization using polyisobutylene supported Grubbs second-generation catalyst
Mohammed Al‐Hashimi, Mohamad Diah Abu Bakar, Khaled Elsaid, David E. Bergbreiter, Hassan S. Bazzi
Abstract
Mohammed Al‐Hashimi, Mohamad Diah Abu Bakar, Khaled Elsaid, David E. Bergbreiter, Hassan S. Bazzi
Abstract
Olefin metathesis is among the most powerful tools for the formation of regio- and steroselective carbon–carbon double bonds. Applying the principles of Green Chemistry to the syntheses of polymers by developing useful strategies to facilitate catalyst and polymer product separation after a polymerization is vital. In the present study, a phase selectively soluble polymer bound second generation Grubbs catalyst was successfully used to carry out ring-opening metathesis polymerization (ROMP) on norbornene and a variety of different exo-norbornene derivatives. Polymers with low ruthenium contamination levels were achieved in comparison to the non-supported Grubbs catalyst which required multiple precipitations. Furthermore, the bound catalyst exhibits similar catalytic activity to its homogenous counterpart.
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Olefin metathesis is among the most powerful tools for the formation of regio- and steroselective carbon–carbon double bonds. Applying the principles of Green Chemistry to the syntheses of polymers by developing useful strategies to facilitate catalyst and polymer product separation after a polymerization is vital. In the present study, a phase selectively soluble polymer bound second generation Grubbs catalyst was successfully used to carry out ring-opening metathesis polymerization (ROMP) on norbornene and a variety of different exo-norbornene derivatives. Polymers with low ruthenium contamination levels were achieved in comparison to the non-supported Grubbs catalyst which required multiple precipitations. Furthermore, the bound catalyst exhibits similar catalytic activity to its homogenous counterpart.
Key concepts: ROMP, Norbornene, Ring-opening metathesis polymerisation, Metathesis, Polymerization, Catalysis, Grubbs' catalyst, Polymer