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Synthesis and Characterization of Hybrid Biopolymers of L-lactic Acid and 2-Pyrone-4,6-dicarboxylic Acid
Authors:Tsuyoshi Michinobu  Masami Bito  Miki Tanimura  Yoshihiro Katayama  Eiji Masai  Masaya Nakamura
Affiliation:1. Graduate School of Engineering , Tokyo University of Agriculture and Technology , Koganei, Tokyo, Japan;2. Institute of Symbiotic Science and Technology, Tokyo University of Agriculture and Technology , Koganei, Tokyo, Japan;3. Graduate School of Engineering , Tokyo University of Agriculture and Technology , Koganei, Tokyo, Japan;4. Graduate School of Bio-Applications and Systems Engineering , Tokyo University of Agriculture and Technology , Koganei, Tokyo, Japan;5. Department of Bioengineering , Nagaoka University of Technology , Nagaoka, Niigata, Japan;6. Forestry and Forest Products Research Institute , Tsukuba, Ibaraki, Japan
Abstract:Copolymers of L-lactic acid (LA) and 2-pyrone-4,6-dicarboxylic acid (PDC), a chemically stable metabolic intermediate of lignin, were prepared by dehydrated polycondensation based on stepwise oligomerization followed by post-polymerization in vacuo. When the polymerization was performed in the presence of methanesulfonic acid as a catalyst, the molecular weights of the resulting copolymers were sufficiently high. Furthermore, expansion of the polymeric surface area was found to be an important factor in facilitating dehydration and thereby producing high molecular weight polymers. PDC feed ratio significantly affected the molecular weight because of the different polymerization capability from LA. Relationship between the PDC feed ratio and the molecular weight of the resulting polyesters was for the first time demonstrated quantitatively. The obtained copolymers were characterized by 1H- and 13C-NMR, IR, and thermal analysis. The high molecular weight copolymers possessed the higher decomposition temperatures than PLLA and their fusible temperature ranges were reasonably expanded.
Keywords:Biomass  lignin  polycondensation  polyester  polylactide
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