JOURNAL ARTICLE

Synthesis and Characterisation of Poly[oligo(ε‐caprolactone)L‐malate‐graft‐poly(L‐lactide)]

Christian HahnHelmut KeulMartin Möller

Year: 2010 Journal:   Macromolecular Chemistry and Physics Vol: 211 (7)Pages: 752-760   Publisher: Wiley

Abstract

Abstract Graft copolyesters with a PCL backbone and PLLA side chains were successfully prepared in three steps avoiding transesterification. First ε ‐caprolactone was polymerised with 1,6‐hexane diol as initiator to obtain hydroxytelechelic oligo( ε ‐caprolactone)s. These diols were then subjected—in the second step—to polycondensation with L ‐malic acid yielding in linear poly[oligo( ε ‐caprolactone) L ‐malate] having secondary hydroxyl functions in the side chain. For both reactions scandium triflate Sc(OTf) 3 was used as a catalyst. In the third step various amounts of L ‐lactide were grafted from the polymer backbone using Zn(oct) 2 as catalyst. The successful reaction was confirmed by NMR and SEC (size exclusion chromatography) analysis. Further the thermal properties of the graft copolymers with different graft lengths were determined via differential scanning calorimetry. magnified image

Keywords:
Polymer chemistry Caprolactone Condensation polymer Lactide Transesterification Chemistry Copolymer Diol Ring-opening polymerization Malic acid Differential scanning calorimetry Catalysis Polymer Materials science Organic chemistry

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Citation History

Topics

biodegradable polymer synthesis and properties
Physical Sciences →  Materials Science →  Biomaterials
Electrospun Nanofibers in Biomedical Applications
Physical Sciences →  Materials Science →  Biomaterials
Graphene and Nanomaterials Applications
Physical Sciences →  Engineering →  Biomedical Engineering

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