Yao Xiaokang, Ma Huili, Wang Xiao, Wang He, Wang Qian, Zou Xin, Song Zhicheng, Jia Wenyong, Li Yuxin, Mao Yufeng, Singh Manjeet, Ye Wenpeng, Liang Jian, Zhang Yanyun, Liu Zhuang, He Yixiao, Li Jingjie, Zhou Zixing, Zhao Zhu, Zhang Yuan, Niu Guowei, Yin Chengzhu, Zhang Shasha, Shi Huifang, Huang Wei, An Zhongfu
Key Laboratory of Flexible Electronics & Institute of Advanced Materials, Nanjing Tech University, Nanjing, China.
Frontiers Science Center for Flexible Electronics, MIIT Key Laboratory of Flexible Electronics, Northwestern Polytechnical University, Xi'an, China.
Nat Commun. 2022 Aug 19;13(1):4890. doi: 10.1038/s41467-022-32029-1.
Intermolecular interactions, including attractive and repulsive interactions, play a vital role in manipulating functionalization of the materials from micro to macro dimensions. Despite great success in generation of ultralong organic phosphorescence (UOP) by suppressing non-radiative transitions through attractive interactions recently, there is still no consideration of repulsive interactions on UOP. Herein, we proposed a feasible approach by introducing carboxyl groups into organic phosphors, enabling formation of the intense repulsive interactions between the isolated molecules and the matrix in rigid environment. Our experimental results show a phosphor with a record lifetime and quantum efficiency up to 3.16 s and 50.0% simultaneously in film under ambient conditions. Considering the multiple functions of the flexible films, the potential applications in anti-counterfeiting, afterglow display and visual frequency indicators were demonstrated. This finding not only outlines a fundamental principle to achieve bright organic phosphorescence in film, but also expands the potential applications of UOP materials.
分子间相互作用,包括吸引和排斥相互作用,在从微观到宏观尺度操纵材料的功能化方面起着至关重要的作用。尽管最近通过吸引相互作用抑制非辐射跃迁在产生超长有机磷光(UOP)方面取得了巨大成功,但仍未考虑排斥相互作用对UOP的影响。在此,我们提出了一种可行的方法,通过将羧基引入有机磷光体,在刚性环境中使孤立分子与基质之间形成强烈的排斥相互作用。我们的实验结果表明,在环境条件下,一种磷光体在薄膜中同时具有高达3.16秒的创纪录寿命和50.0%的量子效率。考虑到柔性薄膜的多种功能,展示了其在防伪、余辉显示和视觉频率指示器方面的潜在应用。这一发现不仅概述了在薄膜中实现明亮有机磷光的基本原理,还扩展了UOP材料的潜在应用。