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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >UV-curable fluoropolymers crosslinked with functional fluorescent dyes: the way to multifunctional thin-film luminescent solar concentrators
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UV-curable fluoropolymers crosslinked with functional fluorescent dyes: the way to multifunctional thin-film luminescent solar concentrators

机译:用功能性荧光染料交联的UV固化含氟聚合物:多功能薄膜发光太阳能浓缩器的方式

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摘要

A novel photo-curable multifunctional luminescent system with high durability is presented in this work for application in thin-film luminescent solar concentrators (LSC), based on a fluorinated polymer matrix covalently linked to a newly synthesized functional perylene-derived luminescent organic dye. The UV-curable fluoropolymeric matrix consists of a blend of three different UV-curable fluorinated polymers. Such a matrix was co-reacted upon UV-light exposure with a suitably functionalized perylene-based luminescent organic dye bearing lateral carbon double bonds, to yield the solid crosslinked LSC thin film. A thorough characterization of the new luminescent system evidenced its excellent chemical, physical and optical properties, while its functional performance was evaluated in terms of LSC device response at varying dye concentrations. To assess the long-term stability of the new UV-curable LSC system, a long term (>800 h) light-exposure durability study was conducted on the LSC devices which fully retained their initial performance. In contrast, reference host/guest luminescent systems based on the same UV-curable fluoropolymeric matrix doped with a conventional fluorescent dye exhibited an overall similar to 10% efficiency loss in the same time frame. In addition, such a novel UV-curable fluoropolymeric LSC system presented a highly hydrophobic character and moderate oleophobicity, which impart easy cleanability to the LSC coating, as a result of the highly perfluorinated nature of the polymeric matrix. This study represents the first demonstration of highly stable multifunctional UV-curable thin-film LSC systems and gives a clear demonstration of a straightforward room-temperature preparation process that may offer an easily scalable approach to highly stable and multifunctional LSC devices.
机译:在这项工作中提出了一种具有高耐久性的新型光固化多功能发光系统,其适用于薄膜发光太阳能浓缩器(LSC),基于与新合成的功能性泛衍生的发光有机染料共价连接的氟化聚合物基质。 UV固化含氟聚合基质基质由三种不同的UV可固化氟化聚合物的共混物组成。这种基质在用横向碳双键具有适当的官能化的基于丙氨酸的发光有机染料的UV光暴露时共同反应,得到固体交联的LSC薄膜。新的发光系统的彻底表征证明了其优异的化学,物理和光学性质,而在不同染料浓度下的LSC器件响应方面评估其功能性能。为了评估新的UV固化LSC系统的长期稳定性,在LSC器件上进行了长期(> 800h)光曝光耐久性研究,该研究完全保留了它们的初始性能。相反,基于与常规荧光染料掺杂的相同紫外可固化的含氟聚合物基质的参考主机升温系统表现出与同一时间框架相似的总体上与10%的效率损失相似。此外,这种新型UV固化含氟聚合LSC系统呈现出高度疏水性的特征和中等的疏脂性,其赋予LSC涂层的易于清洁性,这是聚合物基质的高度全氟化性质的结果。该研究代表了高度稳定的多功能UV固化薄膜LSC系统的第一次演示,并清楚地说明了直接的室温制备过程,可以提供高度稳定和多功能LSC器件的易于可扩展的方法。

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