Xue Nan, Zhou He-Ye, Han Ying, Li Meng, Lu Hai-Yan, Chen Chuan-Feng
University of Chinese Academy of Sciences, Beijing, 100049, China.
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Molecular Recognition and Function, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
Nat Commun. 2024 Feb 16;15(1):1425. doi: 10.1038/s41467-024-45717-x.
Developing a facile and feasible strategy to fabricate thermally activated delayed fluorescence materials exhibiting full-color tunability remains an appealing yet challenging task. In this work, a general supramolecular strategy for fabricating thermally activated delayed fluorescence materials is proposed. Consequently, a series of host-guest cocrystals are prepared by electron-donating calix[3]acridan and various electron-withdrawing guests. Owing to the through-space charge transfer mediated by multiple noncovalent interactions, these cocrystals all display efficient thermally activated delayed fluorescence. Especially, by delicately modulating the electron-withdrawing ability of the guest molecules, the emission colors of these cocrystals can be continuously tuned from blue (440 nm) to red (610 nm). Meanwhile, high photoluminescence quantum yields of up to 87% is achieved. This research not only provides an alternative and general strategy for the fabrication of thermally activated delayed fluorescence materials, but also establishes a reliable supramolecular protocol toward the design of advanced luminescent materials.
开发一种简便可行的策略来制备具有全色可调性的热激活延迟荧光材料仍然是一项有吸引力但具有挑战性的任务。在这项工作中,提出了一种制备热激活延迟荧光材料的通用超分子策略。因此,通过给电子的杯[3]吖啶和各种吸电子客体制备了一系列主客体共晶体。由于多个非共价相互作用介导的空间电荷转移,这些共晶体均显示出高效的热激活延迟荧光。特别是,通过精细调节客体分子的吸电子能力,这些共晶体的发射颜色可以从蓝色(440nm)连续调节到红色(610nm)。同时,实现了高达87%的高光致发光量子产率。这项研究不仅为热激活延迟荧光材料的制备提供了一种替代的通用策略,而且为先进发光材料的设计建立了可靠的超分子方案。