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Enhancing the performance of pure organic room-temperature phosphorescent luminophores

机译:增强纯有机室温磷光发光体的性能

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摘要

Once considered the exclusive property of metal complexes, the phenomenon of room-temperature phosphorescence (RTP) has been increasingly realized in pure organic luminophores recently. Using precise molecular design and synthetic approaches to modulate their weak spin–orbit coupling, highly active triplet excitons, and ultrafast deactivation, organic luminophores can be endowed with long-lived and bright RTP characteristics. This has sparked intense explorations into organic luminophores with enhanced RTP features for different applications. This Review discusses the fundamental mechanism of RTP in pure organic luminophores, followed by design principles, enhancement strategies, and formulation methods to achieve highly phosphorescent and long-lived organic RTP luminophores even in aqueous media. The current challenges and future directions of this field are also discussed in the summary and outlook.
机译:一旦考虑到金属络合物的排他性,室温磷光(RTP)现象近来已在纯有机发光体中越来越多地实现。使用精确的分子设计和合成方法来调节其弱的自旋-轨道耦合,高活性的三重态激子和超快的失活,有机发光体可以具有长寿命且明亮的RTP特性。这引发了对具有增强的RTP功能的有机发光体在不同应用中的深入研究。这篇综述讨论了纯有机发光体中RTP的基本机理,然后讨论了即使在水性介质中也能实现高磷光和长寿命的有机RTP发光体的设计原理,增强策略和配制方法。总结和展望还讨论了该领域的当前挑战和未来方向。

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