4.3 Article Proceedings Paper

Optimization of enzymatic ring-opening copolymerizations involving δ-gluconolactone as monomer by experimental design

期刊

PURE AND APPLIED CHEMISTRY
卷 86, 期 11, 页码 1781-1792

出版社

WALTER DE GRUYTER GMBH
DOI: 10.1515/pac-2014-0717

关键词

biocatalysis; experimental design; lipase; modeling; POC-2014; polymerization; delta-gluconolactone

资金

  1. Ministry of National Education, Romania [POSDRU/159/1.5/S/137070 (2014)]
  2. European Social Fund-Investing in People, within the Sectoral Operational Programme Human Resources Development

向作者/读者索取更多资源

Enzymatic incorporation of carbohydrate-derived monomer units into hydrophobic polyester backbones represents a promising alternative to obtain new biodegradable oligomers and polymers. Immobilized lipases are efficient biocatalysts for copolymerization of beta-butyrolactone and delta-gluconolactone, but only a systematic optimization study was able to highlight the influence of the main reaction parameters on the polymerization degree and on the relative copolymer content of the product. Therefore, experimental design was employed for determination of the optimal ring-opening copolymerization conditions in solventless reaction systems, at temperatures up to 80 degrees C. The obtained products, cyclic and linear polyesters, have been characterized by FT-IR, MALDI-TOF MS, NMR, and TG analysis, demonstrating the incorporation of gluconolactone unit(s) into the hydrophobic backbone of the polyester and the formation of new bio-based products.

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