Zhou Jingyi, Tian Bing, Zhai Yingxiang, Wang Min, Liu Shouxin, Li Jian, Li Shujun, James Tony D, Chen Zhijun
Key Laboratory of Bio-based Material Science & Technology, Northeast Forestry University, Ministry of Education, Harbin, China.
International joint lab of advanced biomass materials, Northeast Forestry University, Heilongjiang Province, Harbin, China.
Nat Commun. 2024 Aug 22;15(1):7198. doi: 10.1038/s41467-024-51545-w.
Sustainable photoactivated room temperature phosphorescent materials exhibit great potential but are difficult to obtain. Here, we develop photoactivated room temperature phosphorescent materials by covalently attaching lignin to polylactic acid, where lignin and polylactic acid are the chromophore and matrix, respectively. Initially the phosphorescence of the lignin is quenched by residual O. However, the phosphorescence is switched on when the residual oxygen is consumed by the triplet excitons of lignin under continuous UV light irradiation. As such, the lifetime increases from 3.0 ms to 221.1 ms after 20 s of UV activation. Interestingly, the phosphorescence is quenched again after being kept under an atmosphere of air for 2 h in the absence of UV irradiation due to the diffusion of oxygen into the materials. Using these properties, as-developed material is successfully used as a smart anti-counterfeiting logo for a medicine bottle and for information recording.
可持续的光活化室温磷光材料具有巨大潜力,但难以获得。在此,我们通过将木质素共价连接到聚乳酸上开发出光活化室温磷光材料,其中木质素和聚乳酸分别作为发色团和基质。最初,木质素的磷光被残余的氧猝灭。然而,在连续紫外光照射下,当残余氧被木质素的三线态激子消耗时,磷光被开启。因此,经过20秒的紫外活化后,寿命从3.0毫秒增加到221.1毫秒。有趣的是,由于氧气扩散到材料中,在没有紫外照射的情况下,在空气中放置2小时后,磷光再次被猝灭。利用这些特性,所开发的材料成功用作药瓶的智能防伪标识和信息记录材料。