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Complementary Color Tuning by HCl via Phosphorescence-to-Fluorescence Conversion on Insulated Metallopolymer Film and Its Light-Induced Acceleration

机译:HCl在绝缘金属聚合物薄膜上的磷光-荧光转换作用下的互补色调节及其光致加速

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摘要

An insulated metallopolymer that undergoes phosphorescence-to-fluorescence conversion between complementary colors by an acid-stimulus is proposed as a color-tunable material. A Pt-based phosphorescent metallopolymer, where the conjugated polymeric backbone is insulated by a cyclodextrin, is depolymerized by HCl via acidic cleavage of Pt-acetylide bonds to form a fluorescent monomer. The insulation enables phosphorescence-to-fluorescence conversion to take place in the solid film. Rapid color change was achieved by accelerating the reaction between the metallopolymer and HCl by UV irradiation. These approaches are expected to provide new guidelines for the development of next-generation color-tunable materials and printable sensors based on precise molecular engineering.
机译:提出一种通过酸刺激在互补色之间进行磷光-荧光转换的绝缘金属聚合物作为颜色可调材料。一种基于Pt的磷光金属聚合物,其中的共轭聚合物主链通过环糊精绝缘,然后通过HCl通过Pt-乙炔键的酸性裂解而解聚,从而形成荧光单体。该绝缘使得能够在固体膜中发生磷光-荧光转换。通过UV辐射加速金属聚合物与HCl之间的反应,可以实现快速的颜色变化。这些方法有望为基于精确分子工程的下一代色彩可调材料和可打印传感器的开发提供新的指导。

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