Shi Jiaju, Zhang Peng, Gao Haiyang, Zhu Fangming, Liang Guodong
PCFM Lab, School of Materials Science and Engineering, Sun Yat-Sen University, Guangzhou, 510275, China.
Angew Chem Int Ed Engl. 2025 Mar 10;64(11):e202421634. doi: 10.1002/anie.202421634. Epub 2025 Jan 2.
The development of organic afterglow materials has garnered significant attention due to their diverse applications in smart devices, optoelectronics, and bioimaging. However, polymeric afterglow materials often suffer from short emission lifetimes, typically ranging from milliseconds to seconds, posing a significant challenge for achieving hour-long afterglow (HLA) polymers. This study presents the successful fabrication of transparent HLA polymers by introducing electron donor/acceptor exciplexes. Employing aromatic polyesters as the polymer electron acceptor and charge reservoirs, the resulting HLA polymers exhibited a remarkable green afterglow that persisted for 12 hours under ambient conditions, representing the longest duration achieved for polymeric afterglow materials to date. Intriguingly, these HLA polymers could be activated solely by sunlight, maintaining a green afterglow for over 6 hours at room temperature in air, which outperformed all previously reported afterglow polymers. The doped polymers exhibited superior flexibility and transparency, making them ideal candidates for flexible display applications. Furthermore, successfully spinning these doped polymers into fibers while retaining their HLA properties opens up exciting possibilities for their use in wearable smart devices.
由于有机余辉材料在智能设备、光电子学和生物成像等领域的广泛应用,其发展受到了广泛关注。然而,聚合物余辉材料的发射寿命通常较短,一般在毫秒到秒的范围内,这给实现长达数小时的余辉(HLA)聚合物带来了重大挑战。本研究通过引入电子供体/受体激基复合物,成功制备了透明的HLA聚合物。以芳香族聚酯作为聚合物电子受体和电荷储存库,所得的HLA聚合物呈现出显著的绿色余辉,在环境条件下持续12小时,这是迄今为止聚合物余辉材料所实现的最长持续时间。有趣的是,这些HLA聚合物仅通过阳光就能被激活,在室温空气中能保持超过6小时的绿色余辉,性能优于此前报道的所有余辉聚合物。掺杂后的聚合物具有优异的柔韧性和透明度,使其成为柔性显示应用的理想候选材料。此外,成功地将这些掺杂聚合物纺成纤维并保持其HLA特性,为其在可穿戴智能设备中的应用开辟了令人兴奋的可能性。