4.7 Article

Antioxidant Potential of Santowhite as Synthetic and Ascorbic Acid as Natural Polymer Additives

期刊

POLYMERS
卷 14, 期 17, 页码 -

出版社

MDPI
DOI: 10.3390/polym14173518

关键词

DFT; BDE; natural additive; IP; HAT

资金

  1. European Union
  2. European Regional Development Fund [GINOP-2.3.4-15-2016-00004, GINOP-2.3.6-15-2015-00001]
  3. National Research, Development, and Innovation Fund (Hungary) [TKP2021-NVA-14]
  4. PaNOSC European project
  5. [2019-2.1.13-TET-IN-2020-00059]
  6. [2019-2.1.13-TET-IN]

向作者/读者索取更多资源

This study used computational tools to investigate the potential and applicability of synthetic and natural antioxidants, and compared their antioxidant potential. The results showed that the natural antioxidant had higher antioxidant capacity, but the synthetic antioxidant also had potential applications.
A wide variety of additives are used to improve specific characteristics of the final polymeric product. Antioxidant additives (AAs) can prevent oxidative stress and thus the damage of polymeric materials. In this work, the antioxidant potential and thus the applicability of Santowhite (SW) as synthetic and ascorbic acid (Asc) as natural AAs were explored by using computational tools. Two density functional theory (DFT) methods, M05-2X and M06-2X, have been applied in combination with the 6-311++G(2d,2p) basis set in gas phase. Three antioxidant mechanisms have been considered: hydrogen atom transfer (HAT), single electron transfer-proton transfer (SET-PT), and sequential proton loss electron transfer (SPLET). Bond dissociation enthalpy (BDE), ionization potential (IP), proton dissociation enthalpy (PDE), proton affinity (PA), and electron transfer enthalpy (ETE) have been computed for each potential hydrogen donor site. The results indicate that the antioxidant potential of Asc is higher than SW. Furthermore, some of the C-H bonds, depending on their position in the structures, are potent radical scavengers, but O-H groups are more prone to donate H-atoms to free radicals. Nonetheless, both additives can be potentially applied to safeguard common polymers and prohibit oxidative stress-induced material deterioration.

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