Toughening of poly(lactic acid) (PLA) with poly(butylene adipate-co-terephthalate) (PBAT): a morphological, thermal, mechanical, and degradation evaluation in a simulated marine environment
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Colloid and Surface Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry
Link
https://link.springer.com/content/pdf/10.1007/s00396-023-05157-3.pdf
Reference66 articles.
1. Gigante V, Canesi I, Cinelli P et al (2019) Rubber toughening of polylactic acid (PLA) with poly(butylene adipate-co-terephthalate) (PBAT): mechanical properties, fracture mechanics and analysis of ductile-to-brittle behavior while varying temperature and test speed. Eur Polymer J 115:125–137. https://doi.org/10.1016/j.eurpolymj.2019.03.015
2. Mehmood A, Raina N, Phakeenuya V et al (2022) The current status and market trend of polylactic acid as biopolymer: awareness and needs for sustainable development. Mater Today Proc. https://doi.org/10.1016/j.matpr.2022.08.387
3. Ashothaman A, Sudha J, Senthilkumar N (2021) A comprehensive review on biodegradable polylactic acid polymer matrix composite material reinforced with synthetic and natural fibers. Mater Today Proc. https://doi.org/10.1016/j.matpr.2021.07.047
4. de Albuquerque TL, Marques Júnior JE, de Queiroz LP et al (2021) Polylactic acid production from biotechnological routes: a review. Int J Biol Macromol 186:933–951. https://doi.org/10.1016/j.ijbiomac.2021.07.074
5. Fonseca-García A, Osorio BH, Aguirre-Loredo RY et al (2022) Miscibility study of thermoplastic starch/polylactic acid blends: thermal and superficial properties. Carbohydr Polym 293:119744. https://doi.org/10.1016/j.carbpol.2022.119744
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