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锡-头孢氨苄配合物存在下聚氯乙烯光稳定性的增强

Enhancement of Photostabilization of Poly(Vinyl Chloride) in the Presence of Tin-Cephalexin Complexes.

作者信息

Arraq Rafid R, Hadi Angham G, Ahmed Dina S, El-Hiti Gamal A, Kariuki Benson M, Husain Amani A, Bufaroosha Muna, Yousif Emad

机构信息

Department of Chemistry, College of Science, Babylon University, Babil 51002, Iraq.

Department of Medical Instrumentation Engineering, Al-Mansour University College, Baghdad 64201, Iraq.

出版信息

Polymers (Basel). 2023 Jan 20;15(3):550. doi: 10.3390/polym15030550.

Abstract

Poly(vinyl chloride), PVC, has many attractive properties, including low cost of manufacture, resistance to acid and alkali corrosion, and ease of molding. However, PVC suffers from aging in harsh conditions, leading to the shortening of its useful life. Stability to irradiation, for example, can be improved through the incorporation of additives to PVC. The design, synthesis, and application of new stabilizers continue to attract attention. The current work investigates the effect of three tin-cephalexin complexes on the stability of PVC on irradiation with ultraviolet (UV) light (λ = 313 nm) at 25 °C for a long duration. The PVC was blended with tin-cephalexin complexes at low concentrations (0.5% by weight), and thin films (around 40 µm) were made from the mixed materials. Various methods, including weight loss, infrared spectroscopy, and surface inspection of irradiated films were used to investigate the role played by these additives in the inhibition of PVC photodecomposition. The results confirmed that the additives led to a significant reduction in the rate of photodecomposition of the PVC blends. Tin-cephalexin complexes can absorb harmful radiation, deactivate hydrogen chloride, and scavenge high-energy species such as peroxides, therefore acting as stabilizers for PVC.

摘要

聚氯乙烯(PVC)具有许多吸引人的特性,包括制造成本低、耐酸碱腐蚀以及易于成型。然而,PVC在恶劣条件下会老化,导致其使用寿命缩短。例如,通过在PVC中加入添加剂可以提高其耐辐照稳定性。新型稳定剂的设计、合成及应用一直备受关注。当前的工作研究了三种锡-头孢氨苄配合物对PVC在25℃下长时间用紫外线(UV)光(λ = 313 nm)辐照时稳定性的影响。将PVC与低浓度(0.5重量%)的锡-头孢氨苄配合物混合,并由混合材料制成薄膜(约40 µm)。采用了各种方法,包括失重法、红外光谱法以及对辐照薄膜的表面检查,来研究这些添加剂在抑制PVC光分解中所起的作用。结果证实,这些添加剂使PVC共混物的光分解速率显著降低。锡-头孢氨苄配合物可以吸收有害辐射,使氯化氢失活,并清除过氧化物等高能量物质,因此可作为PVC的稳定剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3016/9918989/26a5ac6061a5/polymers-15-00550-sch001.jpg

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