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Crystallization-induced dual emission from metal- and heavy atom-free aromatic acids and esters

机译:不含金属和重原子的芳族酸和酯的结晶诱导双发射

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摘要

Pure organic materials exhibiting room temperature phosphorescence (RTP) have significant fundamental importance and promising optoelectronic and biological applications. Exploration of metal- and heavy atom-free pure organic phosphors, however, remains challenging because achieving emissive triplet relaxation that outcompetes the vibrational loss is difficult without metal or heavy atoms. In this contribution, in contrast to aggregation-caused quenching (ACQ) normally observed in conventional chromophores, a unique phenomenon of crystallization-induced dual emission (CIDE), namely, simultaneously boosted fluorescence and phosphorescence upon crystallization, is observed in a group of pure organic aromatic acids and esters at ambient conditions. Moreover, two triplet-involved relaxations of delayed fluorescence (DF) and phosphorescence are activated. Such efficient intrinsic emission from both singlet and triplet states in a single compound without employing metal or heavy atoms is suitable for a variety of fundamental research and applications.
机译:表现出室温磷光(RTP)的纯有机材料具有重要的基础重要性,并有望在光电子和生物领域得到应用。然而,探索不含金属和重原子的纯有机磷光体仍然具有挑战性,因为在没有金属或重原子的情况下,难以实现超过振动损失的发光三重态弛豫。在这种贡献中,与常规生色团通常观察到的聚集引起的猝灭(ACQ)相反,在一组纯净的晶体中观察到独特的结晶诱导的双发射(CIDE)现象,即结晶时同时增强了荧光和磷光。有机芳香酸和酯在环境条件下。此外,延迟荧光(DF)和磷光的两个三重态参与松弛被激活。在单个化合物中不使用金属或重原子的情况下,这种从单重态和三重态的有效本征发射适用于各种基础研究和应用。

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