首页> 外文期刊>Journal of Polymer Research >Synthesis, characterization, properties, and use of new fusidate organotin complexes as additives to inhibit poly(vinyl chloride) photodegradation
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Synthesis, characterization, properties, and use of new fusidate organotin complexes as additives to inhibit poly(vinyl chloride) photodegradation

机译:新融合器组合物作为抑制聚(氯乙烯)光降解的合成,表征,性质和使用新的镰刀酸酯组合物的用途和使用

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Poly(vinyl chloride) (PVC) is a common plastic that has many uses. Additives enhance the properties of PVC and enable its use in specific applications under harsh conditions. Therefore, several new tin complexes containing the fusidate unit were synthesized and tested as PVC photostabilizers. The reaction of sodium fusidate and appropriate tin chloride or oxide in boiling methanol provides the corresponding organotin complex in high yield. The structures and properties of the synthesized tin complexes were established using several analytical and spectroscopic tools. Also, the surface morphology of the complexes was inspected using various methods. The fusidate unit acts as either a monodentate (triphenyl and dibutoxide derivatives) or bidentate (dimethyl and dibutyl derivatives) ligand depending on the substitutes attached to the tin atom. The PVC was blended with tin complexes (0.5% by weight), and thin films were made and irradiated with ultraviolet (UV) light for a long time. The effect of tin complexes on PVC as photostabilizers was assessed using different methods. The tin complexes significantly reduce PVC photodegradation. The non-desirable changes in the irradiated PVC were minimal in the presence of additives compared to those observed in the blank film. The dimethyltin derivative, which had the highest surface area compared to the other complexes, was the most efficient additive to decrease the photodegradation of PVC film after irradiation. The tin complexes prevent photodegradation by acting as ultraviolet absorbers as well as scavengers for hydrogen chloride and peroxides.
机译:聚(氯乙烯)(PVC)是一种具有许多用途的常用塑料。添加剂增强了PVC的性质,并在恶劣的条件下实现其在特定应用中的使用。因此,合成了含有熔化单元的几个新的锡络合物,并作为PVC Photostabilizers测试。钠镰刀酸钠和合适的氯化锡或氧化物在沸腾甲醇中的反应提供了高产率高的相应有机素络合物。使用几种分析和光谱工具建立合成锡配合物的结构和性质。而且,使用各种方法检查复合物的表面形态。该凝聚单元作为单齿(三苯基和二丁氧化物衍生物)或二齿(二甲基和二丁基衍生物)配体,取决于连接到锡原子的替代物。将PVC与锡配合物(0.5重量%)混合,并长时间用紫外(UV)光进行薄膜并照射薄膜。使用不同的方法评估锡络合物在PVC上的影响。使用不同的方法评估PVC。锡复合物显着降低PVC光降解。与在空白薄膜中观察到的那些相比,在添加剂的存在下,辐照PVC的不理想变化是最小的。与其他复合物相比,具有最高表面积的二甲基菌衍生物是最有效的添加剂,以降低照射后PVC膜的光降解。锡配合物通过用作紫外线吸收剂以及氯化氢和过氧化物的清除剂来防止光降解。

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