Song Xiaoqing, Zhai Xiangxiang, Zeng Ying, Wang Guangming, Wang Tengyue, Li Yufang, Yan Qianqian, Chan Chin-Yiu, Wang Biaobing, Zhang Kaka
Jiangsu Key Laboratory of Environmentally Friendly Polymeric Materials School of Materials Science and Engineering, Jiangsu Collaborative Innovation Center of Photovoltaic Science and Engineering, Changzhou University, Changzhou, China.
State Key Laboratory of Organometallic Chemistry and Shanghai Hongkong Joint Laboratory in Chemical Synthesis, Key Laboratory of Synthetic and Self-Assembly Chemistry for Organic Functional Molecules, Ningbo Zhongke creation center of new materials, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, 345 Lingling Road, Shanghai, 200032, P. R. China.
Chemphyschem. 2024 Dec 2;25(23):e202400522. doi: 10.1002/cphc.202400522. Epub 2024 Oct 22.
The long-emission-lifetime nature of room-temperature phosphorescence (RTP) materials lays the foundation of their applications in diverse areas. Despite the advantage of mechanical property, processability and solvent dispersity, the emission lifetimes of polymer-based room-temperature phosphorescence materials remain not particularly long because of the labile nature of organic triplet excited states under ambient conditions. Specifically, ambient phosphorescence lifetime (τ) longer than 2 s and even 4 s have rarely been reported in polymer systems. Here, luminescent compounds with small phosphorescence rate on the order of approximately 10 s are designed, ethylene-vinyl alcohol copolymer (EVOH) as polymer matrix and antioxidant 1010 to protect organic triplets are employed, and ultralong phosphorescence lifetime up to 4.6 s under ambient conditions by short-term and low-power excitation are achieved. The resultant materials exhibit high afterglow brightness, long afterglow duration, excellent processability into large area thin films, high transparency and thermal stability, which display promising anticounterfeiting and data encryption functions.
室温磷光(RTP)材料的长发射寿命特性为其在多个领域的应用奠定了基础。尽管基于聚合物的室温磷光材料具有机械性能、可加工性和溶剂分散性等优点,但由于有机三重态激发态在环境条件下的不稳定性质,其发射寿命仍然不是特别长。具体而言,聚合物体系中很少报道室温磷光寿命(τ)超过2秒甚至4秒的情况。在此,设计了磷光速率约为10秒量级的发光化合物,采用乙烯-乙烯醇共聚物(EVOH)作为聚合物基质并使用抗氧化剂1010来保护有机三重态,通过短期和低功率激发在环境条件下实现了高达4.6秒的超长磷光寿命。所得材料具有高余辉亮度、长余辉持续时间、优异的大面积薄膜加工性、高透明度和热稳定性,显示出有前景的防伪和数据加密功能。