Li Zhijia, Jiang Feilong, Yu Muxin, Li Shengchang, Chen Lian, Hong Maochun
State Key Laboratory of Structure Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350002, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Nat Commun. 2022 Apr 19;13(1):2142. doi: 10.1038/s41467-022-29737-z.
Materials exhibiting aggregation-induced emission (AIE) behaviour enable strong emission in solid state and can respond to various external stimuli, which may facilitate the development of materials for optical sensing, bioimaging or optoelectronic devices. Herein, we use an AIE luminogen 2',5'-diphenyl-[1,1':4',1"-terphenyl]-4,4"-dicarboxylic acid as the ligand to prepare an AIEgen-based MOF (metal-organic framework) named FJI-H31. FJI-H31 exhibits bright luminescence under ambient conditions (under air and at room temperature), but almost no emission is observed under vacuum. Our investigation shows that the emission intensity displays a smooth and reversible enhancement with increased gas pressure, which may be attributed to the restriction of intramolecular motion brought by structural deformation under pressure stimulus. Unlike most pressure-responsive MOFs, the luminescence reverts to its original state once gas pressure recovers. By virtue of its unique optical properties, a luminescent MOF with sensing ability of gas-pressure is realized.
具有聚集诱导发光(AIE)行为的材料在固态下能实现强发光,并且可以对各种外部刺激做出响应,这可能有助于开发用于光学传感、生物成像或光电器件的材料。在此,我们使用AIE发光团2',5'-二苯基-[1,1':4',1"-三联苯]-4,4"-二羧酸作为配体制备了一种基于AIE发光团的金属有机框架(MOF),命名为FJI-H31。FJI-H31在环境条件下(空气氛围和室温下)表现出明亮的发光,但在真空中几乎没有发射。我们的研究表明,随着气压增加,发射强度呈现出平滑且可逆的增强,这可能归因于压力刺激下结构变形导致的分子内运动受限。与大多数压力响应型MOF不同,一旦气压恢复,发光会恢复到其原始状态。凭借其独特的光学性质,实现了一种具有气压传感能力的发光MOF。