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Flexible Self-Supporting Nanofibers Thin Films Showing Reversible Photochromic Fluorescence

机译:柔性自支撑纳米纤维薄膜,显示可逆的光致变色荧光

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摘要

Highly sensitive stimuli-responsive fluorescent films play an important role in smart sensors and readable optical devices. However, systems involving light-driven fluorescence changes are still limited compared with photochromic materials that simply change color upon photostimulation. Herein, by incorporation of stilbene-based molecules into a poly(vinyl alcohol) host, we have developed new flexible self-supporting nanofiber films that exhibited fast and obvious photochromic fluorescence (PCF). The reversible transfer between two fluorescent states can be easily recycled. Fluorescence microscopy and atomic force microscopy images supplied in situ evidence of changes in fluorescence and surface morphology, respectively. Density functional theoretical calculations showed that the PCF can be attributed to photoisomerization of the stilbene-based molecules. Therefore, based on the combination of experimental and theoretical studies, this work not only supplies new stilbene-based systems with light-induced fluorescence change, but also gives detailed understanding on the photoisomerization and PCF processes of the nanofibers systems. We anticipate that these PCF films can be applied in erasable memory devices and antiforgery materials, and that our strategy may be extended to other systems to fabricate multistimuli-responsive fluorescent materials.
机译:高度敏感的刺激响应荧光膜在智能传感器和可读光学设备中起着重要作用。然而,与光致变色材料相比,涉及光驱动的荧光变化的系统仍然受限制,而光致变色材料仅在光刺激后改变颜色。在本文中,通过将基于二苯乙烯的分子掺入到聚乙烯醇主体中,我们开发了新的柔性自支撑纳米纤维薄膜,该薄膜表现出快速且明显的光致变色荧光(PCF)。两种荧光状态之间的可逆转移可以轻松回收。荧光显微镜和原子力显微镜图像分别提供了荧光和表面形态变化的原位证据。密度泛函理论计算表明,PCF可以归因于基于lb的分子的光异构化。因此,基于实验和理论研究的结合,这项工作不仅为新的基于二苯乙烯的体系提供了光诱导的荧光变化,而且对纳米纤维体系的光致异构化和PCF工艺提供了详细的了解。我们预期这些PCF膜可用于可擦除存储设备和防伪材料,并且我们的策略可能会扩展到其他系统,以制造具有多重刺激响应的荧光材料。

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