Department of Chemistry, College of Science, King Faisal University, Al-Ahsa, Saudi Arabia.
Department of Chemistry, Faculty of Science, Tanta University, Tanta, Egypt.
Luminescence. 2022 Sep;37(9):1504-1513. doi: 10.1002/bio.4324. Epub 2022 Jul 26.
Recycled polyvinyl chloride (PVC) waste was used to prepare transparent materials with long-lasting phosphorescence, photochromic activity, hydrophobicity, strong optical transmission, ultraviolet (UV) light protection, and stiffness. Lanthanide-activated aluminate (LaA) microparticles were prepared using a high temperature solid-state procedure, and were subjected to top-down grinding technology to produce lanthanide-aluminate nanoparticles (LaAN). Laminated PVC bottles were shredded into a transparent plastic matrix, which was combined with LaAN and drop casted to produce smart materials for various applications. Smart windows and photochromic film for smart packaging can be made from recycled PVC waste by immobilizing it with various ratios of LaAN. Long-lasting phosphorescent translucent PVC smart windows and films need LaAN to be evenly dispersed in PVC without clumping. Different analytical methods were used to assess the material's morphological structure and chemical composition. Photoluminescence and decay spectra were all used to investigate the luminescence characteristics. In addition, the mechanical performance was studied. According to Commission Internationale de l'Éclairage laboratory colour measurements, this transparent PVC smart material becomes bright green under UV rays and turns a greenish-yellow in the dark. The PVC luminescence was observed to exhibit apparent emission bands at 429 and 513 nm when excited at 367 nm. Improvements were monitored in UV shielding and hydrophobicity when increasing the phosphor concentration. LaAN-immobilized PVC exhibited reversible photochromism. The present approach can be applied to various applications such as anticounterfeiting films for smart packaging, smart windows, and warning light marks.
采用高温固相法制备了镧激活的铝酸盐(LaA)微粉,并采用自上而下的研磨技术制备了镧铝酸盐纳米粒子(LaAN)。将层压 PVC 瓶粉碎成透明塑料基质,将其与 LaAN 结合并滴铸,以生产各种应用的智能材料。通过将不同比例的 LaAN 固定在回收的 PVC 废物上,可以制造用于智能包装的智能窗户和光致变色膜。具有长余辉的半透明 PVC 智能窗户和薄膜需要 LaAN 在 PVC 中均匀分散而不会团聚。采用不同的分析方法评估材料的形态结构和化学成分。采用荧光光谱和衰减光谱研究发光特性。此外,还研究了机械性能。根据国际照明委员会(Commission Internationale de l'Éclairage)的实验室颜色测量,这种透明 PVC 智能材料在紫外线照射下呈亮绿色,在黑暗中呈绿黄色。当在 367nm 处激发时,观察到 PVC 发光在 429nm 和 513nm 处显示出明显的发射带。当磷光体浓度增加时,UV 屏蔽和疏水性得到改善。固定化 LaAN 的 PVC 表现出可逆的光致变色性。本方法可应用于各种应用,例如智能包装的防伪薄膜、智能窗户和警告灯标记。