Evaluation and Modeling of Polylactide Photodegradation under Ultraviolet Irradiation: Bio-Based Polyester Photolysis Mechanism

Author:

Lomakin Sergey12ORCID,Mikheev Yurii2,Usachev Sergey1,Rogovina Svetlana1,Zhorina Lubov1,Perepelitsina Evgeniya3,Levina Irina2,Kuznetsova Olga1,Shilkina Natalia1,Iordanskii Alexey1ORCID,Berlin Alexander1

Affiliation:

1. N. N. Semenov Federal Research Center for Chemical Physics Academy of Science, 119991 Moscow, Russia

2. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, 119334 Moscow, Russia

3. Federal State Research Center for Chemical Physics and Medical Chemistry, Russian Academy of Sciences, 142432 Chernogolovka, Russia

Abstract

In our study, we investigated the accelerated aging process of PLA under 253.7 nm UV-C irradiation with the use of the GPC, NMR, FTIR, and DSC methods and formal kinetic analysis. The results of GPC and DSC indicated a significant degree of destructive changes in the PLA macromolecules, while spectroscopic methods NMR and FTIR showed maintenance of the PLA main structural elements even after a long time of UV exposure. In addition to that, the GPC method displayed the formation of a high molecular weight fraction starting from 24 h of irradiation, and an increase in its content after 144 h of irradiation. It has been shown for the first time that a distinctive feature of prolonged UV exposure is the occurrence of intra- and intermolecular radical recombination reactions, leading to the formation of a high molecular weight fraction of PLA decomposition products. This causes the observed slowdown of the photolysis process. It was concluded that photolysis of PLA is a complex physicochemical process, the mechanism of which depends on morphological changes in the solid phase of the polymer under UV radiation.

Funder

Ministry of Education and Science of the Russian Federation

Publisher

MDPI AG

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