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通过将稀土铝酸盐纳米颗粒整合到回收聚乙烯废料中来制备透明光致发光智能窗。

Preparation of transparent photoluminescence smart window by integration of rare-earth aluminate nanoparticles into recycled polyethylene waste.

作者信息

Alhasani Mona, Al-Qahtani Salhah D, Hameed Ahmed, Snari Razan M, Shah Reem, Alfi Alia Abdulaziz, El-Metwaly Nashwa M

机构信息

Department of Chemistry, Faculty of Applied Science, Umm-Al-Qura University, Makkah, Saudi Arabia.

Department of Chemistry,College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh, Saudi Arabia.

出版信息

Luminescence. 2022 Apr;37(4):622-632. doi: 10.1002/bio.4202. Epub 2022 Feb 13.

Abstract

Novel photoluminescent nanocomposite sheets were prepared for simple commercial manufacturing of transparent and luminous photochromic smart windows. A simple physical integration of lanthanide-doped strontium aluminium oxide (LdSAO) nanoparticles into recycled polyethylene (PE) waste produced a smart nanocomposite with persistent phosphorescence and photochromic properties. Because the nanoparticle form of LdSAO is important for developing transparent materials, LdSAO nanoparticles were well dispersed in the PE matrix. Both the morphologies and chemical compositions of the LdSAO nanoparticles and LdSAO-containing luminescent PE sheets were investigated. Both LdSAO-free and photoluminescent PE sheets were colourless in normal daylight. However the LdSAO-containing PE luminescent samples only exhibited a brilliant green colour under ultraviolet (UV) light and a greenish-yellow colour in the dark as verified by Commission Internationale de l'éclairage laboratory parameters. Both absorbance and emission bands were monitored at 377 and 436/517 nm, respectively. The LdSAO-containing PE luminescent sheets were compared with the LdSAO-free sample using both photoluminescence spectroscopy and for their mechanical properties and were found to have improved scratch resistance, UV protection, and superhydrophobic activity. Due to the added LdSAO, photoluminescence, decay, and lifetime spectral tests confirmed its photochromic fluorescence and long-lasting phosphorescence characteristics. The PE@LdSAO nanocomposite sheets displayed UV protection, photostability, hydrophobicity, and excellent durability compared with the blank LdSAO-free PE sheet.

摘要

制备了新型光致发光纳米复合片材,用于透明发光光致变色智能窗户的简单商业化生产。将镧系掺杂的锶铝氧化物(LdSAO)纳米颗粒与回收的聚乙烯(PE)废料进行简单的物理整合,制备出了具有持久磷光和光致变色性能的智能纳米复合材料。由于LdSAO的纳米颗粒形式对于开发透明材料很重要,因此LdSAO纳米颗粒在PE基体中分散良好。对LdSAO纳米颗粒和含LdSAO的发光PE片材的形态和化学成分进行了研究。不含LdSAO的PE片材和光致发光PE片材在正常日光下均为无色。然而,经国际照明委员会实验室参数验证,含LdSAO的PE发光样品在紫外光下仅呈现出明亮的绿色,在黑暗中呈现出黄绿色。吸光度和发射带分别在377和436/517nm处进行监测。使用光致发光光谱法以及对其机械性能进行比较,发现含LdSAO的PE发光片材与不含LdSAO的样品相比,具有更好的耐刮性、紫外线防护和超疏水活性。由于添加了LdSAO光致发光、衰减和寿命光谱测试证实了其光致变色荧光和持久磷光特性。与空白的不含LdSAO的PE片材相比,PE@LdSAO纳米复合片材具有紫外线防护、光稳定性、疏水性和优异的耐久性。

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