Hu Pengtao, Lang Yu, Sun Jiahui, Wang Lilin, Liang Zhiling, Yang Zhan, Ma Chunping, Luo Miao, Lin Peiwei, Li Jiaqing, Zheng Chunxiong, Shi Guang, Chi Zhenguo, Xu Bingjia
School of Chemistry, South China Normal University, Guangzhou, 510006, China.
School of Environmental and Chemical Engineering, Wuyi University, Jiangmen, 529020, China.
Adv Sci (Weinh). 2025 Jul 29:e08888. doi: 10.1002/advs.202508888.
In this work, highly robust polymer-based luminescent microspheres with efficient and full-color organic afterglow are developed for the first time. N-phenylnaphthalen-1-amine, N-phenylphenanthren-9-amine, and N-phenyltriphenylen-2-amine are employed as guest luminogens and embedded into melamine-formaldehyde polymer matrices with compact and permanent three-dimensional (3D) covalent networks via host-guest doping and emulsion polymerization. The resulting polymeric microspheres, with a diameter of ≈2 µm, show blue to yellow-green organic afterglow at room temperature. Excitingly, their phosphorescence quantum yields and lifetimes are up to 18.0% and 1.39 s, respectively, representing a breakthrough in comprehensive organic afterglow performance for polymer-based luminescent microspheres. Meanwhile, dual-mode organic afterglow and persistent red fluorescence with a lifetime of 0.24 s and a quantum yield of 22.2% are also achieved from the microspheres by simply replacing the guest luminogen and the phosphorescence resonance energy transfer approach, respectively. More importantly, the polymer-based organic afterglow microspheres exhibit outstanding resistance to water and organic solvents. Inspired by the efficient and highly robust organic afterglow, potential applications of the polymeric microspheres are demonstrated in stretchable elastomers, information anti-counterfeiting, 3D printing, and explosive detection. This work provides a universal strategy for developing polymeric microspheres with efficient, robust, and colorful organic afterglow.
在这项工作中,首次开发出了具有高效全彩有机余辉的高度稳健的聚合物基发光微球。N-苯基萘-1-胺、N-苯基菲-9-胺和N-苯基三亚苯-2-胺被用作客体发光剂,并通过主客体掺杂和乳液聚合嵌入到具有致密且永久三维(3D)共价网络的三聚氰胺-甲醛聚合物基质中。所得的聚合物微球直径约为2μm,在室温下呈现出从蓝色到黄绿色的有机余辉。令人兴奋的是,它们的磷光量子产率和寿命分别高达18.0%和1.39秒,这代表了聚合物基发光微球在综合有机余辉性能方面的一个突破。同时,通过分别简单地更换客体发光剂和采用磷光共振能量转移方法,还从这些微球中实现了双模式有机余辉和持续时间为0.24秒、量子产率为22.2%的持久红色荧光。更重要的是,聚合物基有机余辉微球表现出对水和有机溶剂的出色耐受性。受高效且高度稳健的有机余辉的启发,展示了聚合物微球在可拉伸弹性体、信息防伪、3D打印和爆炸物检测方面的潜在应用。这项工作为开发具有高效、稳健且多彩有机余辉的聚合物微球提供了一种通用策略。