Yin Zheng, Xie Zongliang, Zhang Xianhe, Xue Yufeng, Zhang Deqing, Liu Bin
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202417868. doi: 10.1002/anie.202417868. Epub 2024 Nov 13.
Organic cocrystals formed through multicomponent self-assembly have attracted significant interest owing to their clear structure and tunable optical properties. However, most cocrystal systems suffer from inefficient long-wavelength emission and low phosphorescence efficiency due to strong non-radiative processes governed by the energy gap law. Herein, an efficient long-lived red afterglow is achieved using a pyrene (Py) cocrystal system incorporating a second component (NPYC4) with thermally activated delayed fluorescence (TADF) and ultralong organic phosphorescence (UOP) properties. The cocrystal (NPYC4-Py) not only inherits the excellent luminescence of its monomeric counterparts, but also exhibits unique dual-mode characteristics, including persistent TADF and UOP emission with a high quantum yield of 58 % and a lifetime of 362 ms. The precise cocrystal stacking distinctly reveals that intermolecular interactions lock the cocrystal formation and weaken the intermolecular π-π interactions between NPYC4 and Py, thereby stabilizing the excited triplet excitons. Furthermore, the favorable energy level of NPYC4 acts as a bridge, reducing the energy gap between the S and T states for Py, therefore activating its red phosphorescence from Py. This research provides direct insights into achieving efficient red UOP through co-crystallization.
通过多组分自组装形成的有机共晶体因其清晰的结构和可调的光学性质而备受关注。然而,由于受能隙定律支配的强非辐射过程,大多数共晶体系统存在长波长发射效率低和磷光效率低的问题。在此,使用芘(Py)共晶体系统实现了高效的长寿命红色余辉,该系统包含具有热激活延迟荧光(TADF)和超长有机磷光(UOP)特性的第二组分(NPYC4)。共晶体(NPYC4-Py)不仅继承了其单体对应物的优异发光性能,还表现出独特的双模特性,包括持续的TADF和UOP发射,量子产率高达58%,寿命为362 ms。精确的共晶体堆积清楚地表明,分子间相互作用锁定了共晶体的形成,并削弱了NPYC4和Py之间的分子间π-π相互作用,从而稳定了激发三重态激子。此外,NPYC4有利的能级起到了桥梁作用,减小了Py的S态和T态之间的能隙,从而激活了Py的红色磷光。这项研究为通过共结晶实现高效红色UOP提供了直接的见解。