Enzymatic catalysis as a versatile tool for the synthesis of multifunctional, bio-based oligoester resins
Stefan Semlitsch,Susana Torron,Mats Johansson,Mats Martinelle
Green Chemistry Pub Date : 11/26/2015 00:00:00 , DOI:10.1039/C5GC02597D
Abstract

The use of enzymes as selective catalysts for processing renewable monomers into added value polymers and materials has received increased attention during the last decade. In the present work Candida antarctica lipase B (CalB) was used as catalyst in one-pot routes to synthesise multifunctional oligoester resins based on an epoxy-functional ω-hydroxy-fatty acid (EFA) extracted from birch bark. The chemoselective enzymatic process resulted in three different EFA-based telechelic oligomers with targeted molecular weights; containing maleimide, methacrylate or oxetane as end-groups, respectively. The enzyme catalysed synthesis of the maleimide and the oxetane telechelic oligomers reached full conversion of monomers (>95%) after 2 h. In the case of methacrylate functional oligomer the EFA monomer reached full conversion (>98%) after 2 h but the integration of the methacrylate moiety took more than 10 h. This was due to a rate limiting reaction path using ethylene glycol dimethacrylate as substrate. The oligomer products were characterised by NMR, MALDI-TOF-MS and SEC.

Graphical abstract: Enzymatic catalysis as a versatile tool for the synthesis of multifunctional, bio-based oligoester resins