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首页> 外文期刊>Angewandte Chemie >Efficient Room-Temperature Phosphorescence of a Solid-State Supramolecule Enhanced by Cucurbit[6]uril
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Efficient Room-Temperature Phosphorescence of a Solid-State Supramolecule Enhanced by Cucurbit[6]uril

机译:由葫芦(CuCurbit)增强的固态超分子的高效室温磷光[6] URIL

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摘要

Efficient emission of purely organic room-temperature phosphorescence (RTP) is of great significant for potential application in optoelectronics and photobiology. Herein, we report an uncommon phosphorescent effect of organic single molecule enhanced by resulting supramolecular assembly of host-guest complexation. The chromophore bromophenyl-methyl-pyridinium (PY) with different counterions as guests display various phosphorescence quantum yields from 0.4% to 24.1%. Single crystal X-ray diffraction results indicate that the chromophore with iodide counterion (PYI) exhibits the highest efficiency maybe due to the halogen-bond interactions. Significantly, the nanosupramolecular assembly of PY chloride complexation with the cucurbit[6]uril gives a greatly enhanced phosphorescent quantum yield up to 81.2% in ambient. Such great enhancement is because of the strict encapsulation of cucurbit[6]uril, which prevents the nonradiative relaxation and promotes intersystem crossing (ISC). This supramolecular assembly concept with counterions effect provides a novel approach for the improvement of RTP.
机译:高效排放纯有机室温磷光(RTP)对于潜在应用在光电子和光生物学中具有重要意义。在此,通过由宿主 - 访客络合的超分子组装报告有机单分子的罕见磷光效应。随着来自客户的不同抗衡离子的发色团溴苯基 - 吡啶(PY)显示出各种磷光量子产量为0.4%至24.1%。单晶X射线衍射结果表明,由于卤素键相互作用,具有碘化物抗衡离子(PYI)的发色团也表现出最高效率。值得注意的是,与葫芦酰络染色的纳米分子组装与葫芦[6]尿嘧啶的氯化物络络络络含量大大增强了磷光量高达81.2%的磷光量。这种巨大的增强是因为严格的葫芦封装[6] URIL,这可以防止非散发性松弛并促进Intersystem交叉(ISC)。这种具有抗衡离子效应的超分子组装概念为改进RTP提供了一种新颖的方法。

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