Isobornyl and Isocamphyl Photostabilizers in Poly(lactic acid)-Based Electrospun Fibers

Author:

Belyi Vladimir1ORCID,Kuzivanov Ivan M.1,Fedorova Irina1,Shumova Olga A.1,Paderin Nikita2,Markov Pavel A.3ORCID,Pikovskoi Ilya I.4ORCID,Chukicheva Irina Yu.1,Kutchin Alexander V.1

Affiliation:

1. Institute of Chemistry, Federal Research Center “Komi Scientific Center”, Ural Branch, Russian Academy of Sciences, 48 Pervomayskaya Str.,167982 Syktyvkar, Russia

2. Institute of Physiology of Federal Research Centre “Komi Science Centre of the Urals Branch of the Russian Academy of Science”, 167982 Syktyvkar, Russia

3. National Medical Research Center for Rehabilitation and Balneology, 121099 Moscow, Russia

4. Core Facility Center “Arktika”, M.V. Lomonosov Northern (Arctic) Federal University, Northern Dvina Emb. 17, 163002 Arkhangelsk, Russia

Abstract

In this work, electrospun polylactide fibers with new photostabilizing additives, 4-methyl-2,6-diisobornylphenol (DIBP) and N-isocamphylaniline (NICA), have been tested under the influence of UV-C radiation (254 nm). The changes in the polymers’ chemical structure under UV-C radiation were revealed through the increase in absorption in the 3600–3100 cm−1 region in regard to the FTIR spectra. In the samples that were irradiated for 1 h, the stabilizing effect of the photoprotectors became most noticeable as the difference in the content of the hydroxyl groups in stabilized and the pure PLA reached a maximum. The TG–DSC method revealed that the most sensitive indicator of the irradiation effect was the glass transition temperature (Tg), which persisted after 2 h of irradiation when using photostabilizers and their combinations. The PLA/DIBP(1) and PLA/NICA(1) samples showed the best results in protecting PLA from UV-C radiation based on the Tg values; although, the mixture of DIBP and NICA was not as effective. The chemical structure of the photostabilized PLA samples was studied using NMR, GPC, and Py–GC/MS analysis. The electrospun polylactide fibers were mechanically tested and the effects of the electrospun samples on cell viability were studied.

Funder

Russian Science Foundation

Publisher

MDPI AG

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