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A novel strategy for realizing dual state fluorescence and low-temperature phosphorescence

机译:新策略实现双重状态荧光和低温磷光

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摘要

We demonstrate a new strategy for the development of dual-state emissive materials by introducing phenyl groups to triphenylpyrrole (TPP) isomers. The phenyl group can increase the rotational barrier and restrict the intramolecular rotation of TPP, thus enhancing the fluorescence efficiency of aggregation induced emission (AIE) materials in solution. Fluorescence of TPP derivatives was not quenched by the drastic intermolecular collision and intramolecular motion at high temperature. On the contrary, the fluorescence of their solutions showed a positive response to temperature. Theoretical calculations demonstrated that the molecules exhibited a higher planar conformation at high temperature. Three donor–acceptor samples with a twisted intramolecular charge transfer (TICT) effect showed a strong phosphorescence with a lifetime up to 10 s at low temperature.
机译:我们展示一个新的战略发展通过引入的dual-state放射性材料苯组triphenylpyrrole (TPP)同分异构体。苯基能够增加旋转的障碍,限制了分子内旋转泛太平洋伙伴关系,从而提高荧光聚合诱导发射效率(AIE)材料解决方案。衍生品是由激烈的不灭的分子间的碰撞和分子内在高温下运动。荧光显示积极的解决方案反应温度。证明了分子表现出一个更高的平面构象在高温下。三个新的样品扭曲分子内电荷转移(TICT)的效果表现出强烈的磷光寿命低温10年代。

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