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Exploring highly efficient light conversion agents for agricultural film based on aggregation induced emission effects

机译:基于聚集诱导发射效应探索高效农膜光转换剂

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Aggregation-induced emission (AIE) is a unique photo-physical phenomenon that has become an emerging and hot research area. It has a wide range of applications due to its excellent luminous properties. In this paper, five compounds and their corresponding light conversion films were prepared based on AIE effects and the thermally activated delayed fluorescence (TADF) phenomenon. Furthermore, ultraviolet conversion, dispersion and photo-physical properties such as UV-vis spectra, fluorescence spectra, and photo stability as well as the mechanical properties of the light conversion films were investigated in detail. The results reveal that triphenylacrylonitrile (TPA) exhibits excellent photo stability and ultraviolet light conversion properties. In addition, the fluorescence emission spectrum of TPA corresponds well with the absorption spectrum of plants in the blue-violet region. In particular, the light conversion film with added TPA also shows enhanced mechanical properties and slightly lower visible light transmittance (3.79%) compared to PVC blank film. Based on the photo stabilities of the five compounds, it can be concluded that the electron-withdrawing cyano group can increase the photo stability of TPA, while carbazole substituents are proved to have an uncertain effect on the rate of photo oxidation, which is attributed to the electron-donating properties of carbazote and increased molecular distortion or rigidity. Finally, it is worth mentioning that this is the first report utilizing AIE-active luminogens (AlEgens) in agricultural light conversion film.
机译:聚集诱导发射(AIE)是一种独特的光物理现象,已经成为一个新兴的研究热点。由于其出色的发光特性,它具有广泛的应用。本文基于AIE效应和热活化延迟荧光(TADF)现象制备了五种化合物及其相应的光转换膜。此外,还详细研究了紫外线转换,色散和光物理特性(例如紫外可见光谱,荧光光谱和光稳定性)以及光转换膜的机械性能。结果表明,三苯基丙烯腈(TPA)表现出优异的光稳定性和紫外光转换性能。另外,TPA的荧光发射光谱与蓝紫色区域中的植物的吸收光谱很好地对应。尤其是,与PVC空白膜相比,添加了TPA的光转换膜还显示出增强的机械性能,可见光透射率略低(3.79%)。根据这五种化合物的光稳定性,可以得出结论,吸电子氰基可以提高TPA的光稳定性,而咔唑取代基对光氧化速率的影响不确定,这是由于氨基甲酸酯的给电子性质,以及增加的分子畸变或刚性。最后,值得一提的是,这是首次在农业光转换膜中使用AIE活性发光剂(AlEgens)的报告。

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