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Biocatalytic synthesis of polyesters from sugar-based building blocks using immobilized Candida antarctica lipase B

  • D.I. Habeych Narvaez
  • , P.B. Juhl
  • , J. Pleiss
  • , D.M. Vanegas
  • , G. Eggink
  • , C.G. Boeriu

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The synthesis of linear ester oligomers (LEOs) and cyclic ester oligomers (CEOs) from non-activated succinic acid (A) in combination with di-anhydro hexitols (B, DAH) in a toluene based medium using immobilized Candida antarctica lipase B (CAL B), was studied. The conversion is highest for isomannide and decreases in the order isomannide > isosorbide isoidide. These experimental results were corroborated by substrate-imprinted docking indicating that the hydroxyl group oriented inwards the “V”-shaped plane of the DAHs (endo-hydroxyl) is preferred over the outwards oriented hydroxyl group (exo-hydroxyl) by CAL B. The maximum conversions under optimized conditions were 88.2% and 93.7% for succinic acid and isomannide, respectively. MALDI-TOF detected products at 24 h were a mixture of cyclic (35.1%) and linear ester oligomers (64.9%). Cyclic ester oliogomers were the most abundant products during the first 8 h of reaction (32.5–48.7%), where the first cyclic of the series (CEO1) was the most predominant cyclic product (23–40%).
Original languageEnglish
Pages (from-to)1-9
JournalJournal of Molecular Catalysis. B, Enzymatic
Volume71
Issue number1-2
DOIs
Publication statusPublished - 2011

Keywords

  • ring-opening polymerization
  • dynamic kinetic resolution
  • secondary alcohols
  • organic medium
  • isosorbide
  • 3(s)-isopropylmorpholine-2,5-dione
  • esterification
  • isomannide
  • oligomers
  • isoidide

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