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首页> 外文期刊>Science Advances >Carbon dots in zeolites: A new class of thermally activated delayed fluorescence materials with ultralong lifetimes
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Carbon dots in zeolites: A new class of thermally activated delayed fluorescence materials with ultralong lifetimes

机译:沸石中的碳点:新型的热活化延迟荧光材料,具有超长的使用寿命

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摘要

Thermally activated delayed fluorescence (TADF) materials are inspiring intensive research in optoelectronic applications. To date, most of the TADF materials are limited to metal-organic complexes and organic molecules with lifetimes of several microseconds/milliseconds that are sensitive to oxygen. We report a facial and general “dots-in-zeolites” strategy to in situ confine carbon dots (CDs) in zeolitic matrices during hydrothermal/solvothermal crystallization to generate high-efficient TADF materials with ultralong lifetimes. The resultant CDs@zeolite composites exhibit high quantum yields up to 52.14% and ultralong lifetimes up to 350 ms at ambient temperature and atmosphere. This intriguing TADF phenomenon is due to the fact that nanoconfined space of zeolites can efficiently stabilize the triplet states of CDs, thus enabling the reverse intersystem crossing process for TADF. Meanwhile, zeolite frameworks can also hinder oxygen quenching to present TADF behavior at air atmosphere. This design concept introduces a new perspective to develop materials with unique TADF performance and various novel delayed fluorescence–based applications.
机译:热激活延迟荧光(TADF)材料正在激发光电应用领域的深入研究。迄今为止,大多数TADF材料仅限于对氧敏感的金属-有机络合物和有机分子,其寿命为几微秒/毫秒。我们报告了一种面部和一般的“沸石中的点”策略,以在水热/溶剂热结晶过程中将碳点(CD)原位限制在沸石基质中,以产生具有超长寿命的高效TADF材料。所得的CDs @沸石复合材料在环境温度和大气条件下显示出高达52.14%的高量子产率和长达350 ms的超长寿命。这种有趣的TADF现象是由于以下事实:沸石的纳米受限空间可以有效地稳定CD的三重态,从而实现TADF的反向系统间交叉过程。同时,沸石骨架还可以阻止氧气淬火,从而在空气中呈现TADF行为。该设计概念为开发具有独特TADF性能和各种新颖的基于延迟荧光的应用的材料引入了新的视角。

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