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新型可持续抗氧化剂与不同聚合物体系的合成及评估

Synthesis and Assessment of Novel Sustainable Antioxidants with Different Polymer Systems.

作者信息

Mouren Agathe, Pollet Eric, Avérous Luc

机构信息

BioTeam/ICPEES ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg CEDEX 2, France.

出版信息

Polymers (Basel). 2024 Feb 1;16(3):413. doi: 10.3390/polym16030413.

Abstract

Antioxidants are essential to the polymer industry. The addition of antioxidants delays oxidation and material degradation during their processing and usage. Sustainable phenolic acids such as 4-hydroxybenzoic acid or 3,4-dihydroxybenzoic acid were selected. They were chemically modified by esterification to obtain various durable molecules, which were tested and then compared to resveratrol, a biobased antioxidant, and Irganox 1076, a well-known and very efficient fossil-based antioxidant. Different sensitive matrices were used, such as a thermoplastic polyolefin (a blend of PP and PE) and a purposely synthesized thermoplastic polyurethane. Several formulations were then produced, with the different antioxidants in varying amounts. The potential of these different systems was analyzed using various techniques and processes. In addition to antioxidant efficiency, other parameters were also evaluated, such as the evolution of the sample color. Finally, an accelerated aging protocol was set up to evaluate variations in polymer properties and estimate the evolution of the potential of different antioxidants tested over time and with aging. In conclusion, these environmentally friendly antioxidants make it possible to obtain high-performance materials with an efficiency comparable to that of the conventional ones, with variations according to the type of matrix considered.

摘要

抗氧化剂对聚合物工业至关重要。添加抗氧化剂可延缓其在加工和使用过程中的氧化及材料降解。选用了可持续的酚酸,如4-羟基苯甲酸或3,4-二羟基苯甲酸。通过酯化对它们进行化学改性,以获得各种耐用分子,对这些分子进行测试,然后与生物基抗氧化剂白藜芦醇以及著名且高效的化石基抗氧化剂Irganox 1076进行比较。使用了不同的敏感基质,如热塑性聚烯烃(PP和PE的混合物)和特意合成的热塑性聚氨酯。然后制备了几种配方,其中不同抗氧化剂的用量各不相同。使用各种技术和工艺分析了这些不同体系的潜力。除了抗氧化效率外,还评估了其他参数,如样品颜色的变化。最后,建立了加速老化方案,以评估聚合物性能的变化,并估计不同测试抗氧化剂的潜力随时间和老化的演变。总之,这些环保型抗氧化剂能够获得性能与传统抗氧化剂相当的高性能材料,其性能会因所考虑的基质类型而有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcf4/10857301/7f8d2fb7e63b/polymers-16-00413-g001.jpg

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