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Ultralong room-temperature phosphorescence of a solid-state supramolecule between phenylmethylpyridinium and cucurbit6uril

机译:苯甲基吡啶和葫芦丝之间的固态超分子的超长室温磷光6 uril

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摘要

Long-lived organic room-temperature phosphorescence (RTP) has received great attention because of its various potential applications. Herein, we report a persistent RTP of a solid-state supramolecule between a cucurbit[6]uril (CB[6]) host and a heavy-atom-free phenylmethylpyridinium guest. Significantly, the long-lived phosphorescence completely depends on the host–guest complexation, revealing that the non-phosphorescent guest exhibits a 2.62 s ultralong lifetime after being complexed by CB[6] under ambient conditions. The ultralong RTP is because of tight encapsulation of CB[6], which boosts intersystem crossing, suppresses nonradiative relaxation and possibly shields quenchers. Moreover, several phosphorescent complexes possessing different lifetimes are prepared and successfully applied in triple lifetime-encoding for data encryption and anti-counterfeiting. This strategy provides a new insight for realizing purely organic RTP with ultralong lifetime and expands its application in the field of information protection.
机译:长寿命有机室温磷光(RTP)由于其各种潜在应用而备受关注。在这里,我们报告了葫芦[6]尿嘧啶(CB [6])主机和无重原子的苯基甲基吡啶客体之间的固态超分子的持久RTP。重要的是,长寿命的磷光完全取决于主体-客体的络合,这表明非磷光的客体在环境条件下被CB [6]络合后表现出2.62 s的超长寿命。超长RTP是由于CB的紧密封装[6],它可以促进系统间的穿越,抑制非辐射弛豫并可能屏蔽淬灭剂。此外,制备了几种具有不同寿命的磷光配合物,并成功地应用于三重寿命编码中,以进行数据加密和防伪。该策略为实现超长寿命的纯有机RTP提供了新的见识,并扩展了其在信息保护领域的应用。

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