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Photostabilizing Efficiency of PVC in the Presence of Schiff Bases as Photostabilizers

机译:在席夫碱作为光稳定剂的情况下PVC的光稳定效率

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摘要

The photostabilization of polyvinyl chloride (PVC) films by Schiff bases was investigated. Polyvinyl chloride films containing 0.5 wt % Schiff bases were produced using the same casting method as that used for additive-free PVC films from tetrahydrofuran (THF) solvent. The photostabilization activities of these compounds were determined by monitoring the carbonyl, polyene and hydroxyl indices with irradiation time. The changes in viscosity average molecular weight of PVC with irradiation time were also monitored using THF as a solvent. The quantum yield of chain scission (Φcs) for the studied complexes in PVC was estimated to range between 4.72 and 8.99 × 10−8. According to the experimental results, several mechanisms were suggested, depending on the structure of the additive. Ultra violet (UV) absorption, peroxide decomposition and radical scavenging were suggested as the photostabilizing mechanisms.
机译:研究了席夫碱对聚氯乙烯(PVC)薄膜的光稳定作用。使用与用于无添加剂的PVC膜的流延方法相同的流延方法,由四氢呋喃(THF)制备含有0.5 wt%席夫碱的聚氯乙烯膜。这些化合物的光稳定活性是通过监测羰基,多烯和羟基指数随照射时间而确定的。还使用THF作为溶剂来监测PVC的粘均分子量随照射时间的变化。研究的PVC复合物的断链量子产率(Φcs)估计在4.72和8.99×10 −8 之间。根据实验结果,根据添加剂的结构,提出了几种机理。紫外线(UV)吸收,过氧化物分解和自由基清除被认为是光稳定机制。

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