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Crosslinking UV-curable polymers with organic dyes for highly stable, multifunctional, light-harvesting luminescent solar concentrators

机译:交联紫外线可固化聚合物,具有有机染料,用于高度稳定,多功能,光收获的发光太阳能浓缩器

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A multifunctional luminescent system characterized by outstanding durability is presented in this work as polymeric matrix for luminescent solar concentrators (LSCs). Such coating was fabricated by embedding a modified perylene-based organic dye in a fluorinated matrix consisting in a blend of photo-curable fluorinated polymers. The coating can easily crosslink when exposed to UV-light. The presence of lateral double bonds in the organic dye molecule enables its co-crosslinking with the acrylate fluorinated matrix. Multifunctionality is granted to the coating by remarkably high water contact angle values, slightly exceeding 120°, which impart easy cleaning properties to the LSC device. Accelerated weathering tests (800 h) showed the outstanding stability of LSCs prepared using the fluorinated matrix co-crosslinked with the modified perylene presented here. These devices retained their initial optical efficiency during the intense weathering test. On the contrary, devices fabricated with the same fluorinated polymers, but incorporating a similar dye with the same chemical structure except for the lateral double bonds enabling co-crosslinking with the polymeric matrix, exhibited a 10% efficiency loss over the testing time. The increased stability can be explained by taking into account the effect of the linkage between the organic dye and the host matrix. The fast and easy preparation process presented in this work represents a scalable approach to remarkably stable and truly multifunctional LSCs.
机译:通过卓越耐久性表征的多官能发光系统作为发光太阳能聚合物(LSC)的聚合物基质。通过将改性的丙烯基有机染料在氟化基质中嵌入包含光固化的氟化聚合物的混合物,通过将这种涂层嵌入。在暴露于UV光时,涂层可以容易地交联。有机染料分子中的横向双键的存在使其与丙烯酸酯氟化基质共同交联。通过显着高的水接触角值,略高于120°,赋予涂层多功能性,从而赋予LSC装置的易于清洁性能。加速风化试验(800小时)显示使用与此处呈现的改性丙烯共同交联的氟化基质制备的LSCs的出色稳定性。这些装置在强烈的风化试验期间保留了它们的初始光学效率。相反,用相同氟化聚合物制造的装置,但除了能够与聚合物基质进行共同交联的横向双键之外的具有相同化学结构的类似染料,在测试时间上显示了10℃的效率损失。通过考虑有机染料与宿主基质之间的效果,可以解释增加的稳定性。本作作品中提出的快速且易于制备的方法代表了可扩展的方法,以获得显着稳定和真正多功能LSC。

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