Synthesis and Modeling of Poly(L-lactic acid) via Polycondensation of L-Lactic Acid

Author:

Theodorou Alexis1ORCID,Raptis Vasilios23ORCID,Baltzaki Chrissie Isabella Maria1,Manios Thrassyvoulos4,Harmandaris Vagelis256ORCID,Velonia Kelly1ORCID

Affiliation:

1. Department of Materials Science and Technology, University of Crete, 70013 Heraklion, Greece

2. Institute of Applied and Computational Mathematics, Foundation for Research and Technology-Hellas, 70013 Heraklion, Greece

3. Department of Computer Science and Engineering, European University Cyprus, 6 Diogenis Str., 2404 Nicosia, Cyprus

4. Department of Agriculture, Hellenic Mediterranean University, 71410 Heraklion, Greece

5. Department of Mathematics and Applied Mathematics, University of Crete, 70013 Heraklion, Greece

6. Computation-Based Science and Technology Research Center, The Cyprus Institute, 2121 Nicosia, Cyprus

Abstract

We present synthetic experiments of lactic acid (LA) polycondensation to produce poly(lactic acid) (PLA) as well as kinetic modeling calculations that capture the polymer molecular weight increase with time, given the initial concentrations. Tin-octoate-catalyzed polycondensation of (D,L)- or L-lactic acid was carried out in pre-dried toluene after azeotropic dehydration for 48–120 h at 130–137 °C. The polymerization was optimized by varying lactic acid and catalyst concentrations as well as the temperature. Gel permeation chromatography was used to experimentally follow the evolution of molecular weights and the products were characterized by NMR, TGA, DSC and IR. Under optimal conditions, PLLA with weight-average molecular weight (Mw) of 161 kDa could be obtained. The rate equations that describe polycondensation kinetics were recast in a condensed form that allowed very fast numerical solution and calculation of the number-average molecular weight with time. Deviations with respect to the experiment were minimized in a least-squares fashion to determine rate constants. The optimized kinetics parameters are shown to reproduce the experimental data accurately.

Funder

European Union

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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