4.7 Article

Thermal degradation behaviour of nanoamphiphilic chitosan dispersed poly (lactic acid) bionanocomposite films

Journal

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
Volume 95, Issue -, Pages 1267-1279

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ijbiomac.2016.11.024

Keywords

Poly (lactic acid); Nanoamphiphilic chitosan; Thermal degradation kinetics

Funding

  1. Ministry of Food Processing Industries, Government of India
  2. Department of Chemical and Petrochemical, GoI
  3. Central Instruments Facility and Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam, India

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In the present study, nano-amphiphilic chitosan termed as chitosan-grafted-oligo L-lactic acid (CH-g-OLLA), is synthesized by microwave initiated insitu condensation polymerization. The synthesized CH-g-OLLA becomes hydrophobic in nature due to chemical bond formation between chitosan backbone and OLLA chains. Further, CH-g-OLLA (30%) bionanocomposite is used as a nanofiller in poly (lactic acid)/chitosan-grafted-oligo L-lactic acid (PLA/CH-g-OLLA) bionanocomposite films. Surface morphology shows a homogeneous dispersion of CH-g-OLLA in the form of spherical aggregates, which vary in the range of similar to 20 to 150 nm. Non-isothermal degradation kinetics, proposed by Kissinger, Kissinger-Akahira-Sunose, Flynn-Wall-Ozawa and Augis & Bennett models, are utilized to estimate the activation energies (Ea) for PLA, which are 254.1, 260.2, 257.0 and 259.1 kJ mol(-1) respectively. The reduction in Ea values of bionanocomposite films may be elucidated by intermolecular distance and enrichment in chain mobility. The evolved gaseous products like hydrocarbons, carbon dioxide, carbon monoxide and cyclic oligomers are successfully identified with TG-FTIR analysis. (C) 2016 Elsevier B.V. All rights reserved.

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