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Photografting of conducting polymer onto polymeric substrate as non-migratory antioxidant packaging

机译:将聚合物在聚合物基材上进行摄影作为非迁移抗氧化包装

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摘要

A non-migratory antioxidant clean label was developed by photografting monomers onto a conventional packaging polymer. The polypropylene (PP) film was initially brushed with glycidyl methacrylate (GMA) to prepare a reactive surface with a large amount of oxirane ring (PP-g-GMA) using a photografting method. Next, a conducting polymer (p-anisidine (PA)) was immobilized on the surface of reactive film (PP-g-GMA) through a ring opening reaction to develop an antioxidant film (PP-g-GMA-g-PA). The chemical structure and atomic composition of the surface of the antioxidant film were characterized through FTIR and XPS, respectively. In addition, the microstructure and morphology of the grafted surface were observed by SEM and AFM. A DPPH assay and electrochemical analysis showed that the PP-g-GMA-g-PA film displayed antioxidant properties and oxidation/ reduction features. Moreover, the storage test in various food matrices demonstrated that the antioxidant films can prolong the shelf life of food, in which the antioxidant film significantly retarded vitamin C degradation and oil oxidation during storage. This system exhibited non-migratory characteristics; no migration residues were detected in simulant solvents after incubation, which can be used for biomedical and packaging applications.
机译:通过将单体的单体开发出一种非迁移的抗氧化清洁标记物在常规的包装聚合物上进行。最初用甲基丙烯酸缩水甘油酯(GMA)刷涂聚丙烯(PP)膜以使用光学形成方法制备具有大量环氮环(PP-G-GMA)的反应性表面。接下来,通过开环反应将导电聚合物(P-酰胺(PP-G-GMA)表面固定在反应性膜(PP-G-GMA)的表面上,以进行抗氧化膜(PP-G-GMA-G-PA)。通过FTIR和XPS的表征抗氧化膜表面的化学结构和原子组成。此外,通过SEM和AFM观察接枝表面的微观结构和形态。 DPPH测定和电化学分析表明,PP-G-GMA-G-PA膜显示出抗氧化性能和氧化/还原特征。此外,各种食物基质的储存试验证明抗氧化膜可以延长食物的保质期,其中抗氧化膜在储存期间显着延迟维生素C降解和氧化。该系统表现出非迁徙特征;在孵育后,在模拟溶剂中检测到迁移残留物,其可用于生物医学和包装应用。

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