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Synthesis,properties and degradation of polyisobutylene–polyester graft copolymers
Authors:Bethany A Turowec  Elizabeth R Gillies
Affiliation:1. Biomedical Engineering Graduate Program, University of Western Ontario, 1151 Richmond Street, London, Canada N6A 5B9;2. Department of Chemical and Biochemical Engineering, University of Western Ontario, 1151 Richmond Street, London, Canada N6A 5B9;3. Department of Chemistry and Center for Advanced Materials and Biomaterials Research (CAMBR), University of Western Ontario, 1151 Richmond Street, London, Canada N6A 5B7
Abstract:The development of copolymers is a promising approach for combining the favorable properties of two polymers and obtaining new properties of the combination. In this work, graft copolymers of polyisobutylene (PIB ) and polycaprolactone or poly(d ,l ‐lactide) were synthesized and studied. Amine‐terminated polyesters were synthesized and were grafted onto an activated PIB backbone synthesized from butyl rubber, a copolymer of isobutylene and 2 mol% isoprene. The polyester content was tuned from 15 to 44 wt% by varying the molar mass of the polyester blocks and the number of molar equivalents used in the grafting reaction. The graft copolymers with higher polyester content underwent nanoscale phase separation, as demonstrated by differential scanning calorimetry and atomic force microscopy imaging. This was found to provide enhanced mechanical properties such as increased tensile strength and Young's modulus relative to the starting rubber or physical blends. Despite the significant polyester content of the graft copolymers and the susceptibility of the polyesters to degradation, the graft copolymers underwent negligible mass loss in 5 mol L?1 NaOH over a period of eight weeks. These results suggest that polyesters can be incorporated into PIB to tune and enhance its properties, while maintaining high chemical stability. © 2016 Society of Chemical Industry
Keywords:polyisobutylene  butyl rubber  poly(lactic acid)  polycaprolactone  graft copolymer
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