Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis and Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou University, Changzhou, Jiangsu, 213164, China.
Mater Horiz. 2023 Jan 3;10(1):107-121. doi: 10.1039/d2mh00986b.
Dynamic color-tunable luminescent materials, which possess huge potential applications in advanced multilevel luminescence anti-counterfeiting, are of considerable interest. However, it remains challenging to develop simple high-contrast reversible multiple (triple or more than triple) color-tunable high-efficiency solid luminescent materials with low cost, facile synthesis, and good processability. Herein, by simply grafting charged multi-color AIEgen-based chromophores into polymers, a series of high-efficiency multiple color-tunable luminescent single ionic polymers are constructed through tuning feed ratios, counter anions and reaction solvents. Remarkably, some ionic polymers can not only achieve rare high-contrast reversible multiple color-tunable emission in solid states in response to different solvent stimuli, but also could realize excitation-dependent color-tunable emission. To the best of our knowledge, such charming multiple (triple or more than triple) color-tunable solid polymers responding to multiple external stimuli are still rare. Based on comparative studies of emission spectra, excitation spectra and fluorescence lifetimes before and after swelling, it could be inferred that solvent stimuli could induce microstructure changes of these ionic polymers and then change the aggregated-states of their corresponding AIE-active emission centers. Moreover, the different solvent stimuli could induce to produce different degrees of microstructure changes, resulting in their unique multiple color-tunable emission. More significantly, these smart color-tunable ionic polymers show great promise for applications in dynamic multilevel (three-level or even more than three-level) anti-counterfeiting.
动态彩色可调谐发光材料在先进的多级发光防伪中具有巨大的应用潜力,因此受到了广泛关注。然而,开发具有低成本、简便合成和良好加工性能的简单高对比度可逆多(三或更多)色可调高效率固态发光材料仍然具有挑战性。在此,通过简单地将带电多色 AIEgen 基发色团接枝到聚合物中,通过调节进料比、抗衡阴离子和反应溶剂,构建了一系列高效多色可调谐发光单离子聚合物。值得注意的是,一些离子聚合物不仅可以在固态下实现罕见的高对比度可逆多色可调发射,以响应不同的溶剂刺激,还可以实现激发依赖性的颜色可调发射。据我们所知,这种迷人的多(三或更多)色可调固态聚合物响应多种外部刺激仍然很少见。通过对发射光谱、激发光谱和溶胀前后荧光寿命的比较研究,可以推断出溶剂刺激可以诱导这些离子聚合物的微结构变化,进而改变它们相应的 AIE 活性发射中心的聚集态。此外,不同的溶剂刺激可以诱导产生不同程度的微结构变化,从而产生独特的多色可调发射。更重要的是,这些智能可调彩色离子聚合物在动态多级(三级甚至更多级)防伪应用中具有广阔的应用前景。