CAS Key Laboratory of Engineering Plastics, Institute of Chemistry, Chinese Academy of Sciences (CAS), Beijing, 100190, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Nat Commun. 2023 Jul 13;14(1):4163. doi: 10.1038/s41467-023-39767-w.
Constructing room-temperature phosphorescent materials with multiple emission and special excitation modes is fascinating and challenging for practical applications. Herein, we demonstrate a facile and general strategy to obtain ecofriendly ultralong phosphorescent materials with multi-mode emission, adjustable excitation-dependence, and visible-light excitation using a single organic component, cellulose trimellitate. Based on the regulation of the aggregation state of anionic cellulose trimellitates, such as CBtCOONa, three types of phosphorescent materials with different emission modes are fabricated, including blue, green and color-tunable phosphorescent materials with a strong excitation-dependence. The separated molecularly-dispersed CBtCOONa exhibits blue phosphorescence while the aggregated CBtCOONa emits green phosphorescence; and the CBtCOONa with a coexistence state of single molecular chains and aggregates exhibits color-tunable phosphorescence depending on the excitation wavelength. Moreover, aggregated cellulose trimellitates demonstrate unique visible-light excitation phosphorescence, which emits green or yellow phosphorescence after turning off the visible light. The aggregation-regulated phenomenon provides a simple principle for designing the proof-of-concept and on-demand phosphorescent materials by using a single organic component. Owing to their excellent processability and environmental friendliness, the aforementioned cellulose-based phosphorescent materials are demonstrated as advanced phosphorescence inks to prepare various disposable complex anticounterfeiting patterns and information codes.
构建具有多发射和特殊激发模式的室温磷光材料对于实际应用具有吸引力和挑战性。在此,我们展示了一种简便而通用的策略,使用单一有机组分纤维素三(均苯三甲酸酯)获得具有多模式发射、可调激发依赖性和可见光激发的环保型超长磷光材料。基于阴离子纤维素三(均苯三甲酸酯)聚集态的调节,如 CBtCOONa,制备了三种具有不同发射模式的磷光材料,包括具有强激发依赖性的蓝色、绿色和可调色彩磷光材料。分离的分子分散 CBtCOONa 表现出蓝色磷光,而聚集的 CBtCOONa 发射绿色磷光;具有单分子链和聚集共存状态的 CBtCOONa 表现出取决于激发波长的可调色彩磷光。此外,聚集的纤维素三(均苯三甲酸酯)表现出独特的可见光激发磷光,在关闭可见光后发出绿色或黄色磷光。聚集调控现象为使用单一有机组分设计概念验证和按需磷光材料提供了一个简单的原理。由于其出色的可加工性和环境友好性,上述基于纤维素的磷光材料被证明是先进的磷光油墨,可用于制备各种一次性复杂防伪图案和信息码。