Tuning thermal properties and microphase separation in aliphatic polyester ABA copolymers

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Abstract

Four alkyl substituted β-lactones were investigated as monomers in ring opening polymerisation to produce a family of poly(3-hydroxyalkanoate)s. Homopolymers were synthesised using a robust aluminium salen catalyst, resulting in polymers with low dispersity (D < 1.1) and predictable molecular weights. ABA triblock copolymers were prepared using poly(l-lactic acid) as the A block and the aforementioned poly(3-hydroxyalkanoate) as the B block via a sequential addition method. Characterisation of these copolymers determined they were well controlled with low dispersities and predictable molecular weight. DSC analysis determined copolymers prepared from β-butyrolactone or β-valerolactone yielded polymers with tunable and predictable thermal properties. Copolymers prepared from β-heptanolactone yielded a microphase separated material as indicated by SAXS, with two distinct Tgs. The polymers could be readily cast into flexible films and their improved tensile properties were explored. This journal is

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Macdonald, J. P., Parker, M. P., Greenland, B. W., Hermida-Merino, D., Hamley, I. W., & Shaver, M. P. (2015). Tuning thermal properties and microphase separation in aliphatic polyester ABA copolymers. Polymer Chemistry, 6(9), 1445–1453. https://doi.org/10.1039/c4py01459f

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