Zheng Yongling, Chen Panpan, Niu Zhigang, Wang Enju
Key Laboratory of Tropical Medicinal Resource Chemistry of Ministry of Education, Key Laboratory of Tropical Medicinal Plant Chemistry of Hainan Province, College of Chemistry & Chemical Engineering, Hainan Normal University, Haikou, 571158, China.
Key Laboratory of Tropical Medicinal Resource Chemistry of Ministry of Education, Key Laboratory of Tropical Medicinal Plant Chemistry of Hainan Province, College of Chemistry & Chemical Engineering, Hainan Normal University, Haikou, 571158, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 May 5;312:124035. doi: 10.1016/j.saa.2024.124035. Epub 2024 Feb 12.
The excimer emission based on discrete π-stacked dimers of polycyclic π-systems has generated significant interest in the structure-luminescence relationship of excimers owing to their ultra-large Stokes shift. Herein, a series of excimer emissive luminogens were obtained by conjugating different polycyclic aromatic aldehydes (anthraldehyde, pyrenealdehyde and perylenealdehyde) with triphenylmethylamine. In crystalline states, all the molecules were arranged in the form of π-stacked arene dimers which were spatially isolated from each other by the bulky triphenylmethyl groups, and thus emitted bright excimer emission. The anthracene and pyrene derivatives showed fluorescence enhancement responses to grinding and the enhanced fluorescence could recover to the original state upon heating. The aggregation-induced emission (AIE) properties of them were dependent on the shapes and sizes of the polycyclic aromatic groups. The pyrene derivative showed the most excellent excimer-based AIE behavior among them. All of them were more apt to exhibit the excimer emission when formed nanoparticles with pluronic F-127 than that without pluronic F-127. Furthermore, PETP was utilized for bioimaging of living Hela cells and the high-resolution image was observed.
基于多环π-体系离散π堆积二聚体的准分子发射,因其超大的斯托克斯位移,在准分子的结构-发光关系方面引起了极大的关注。在此,通过将不同的多环芳香醛(蒽醛、芘醛和苝醛)与三苯甲基胺共轭,获得了一系列准分子发光体。在晶体状态下,所有分子均以π堆积芳烃二聚体的形式排列,这些二聚体被庞大的三苯甲基基团在空间上彼此隔离,因此发出明亮的准分子发射。蒽和芘衍生物对研磨表现出荧光增强响应,且增强的荧光在加热时可恢复到原始状态。它们的聚集诱导发光(AIE)性质取决于多环芳基的形状和大小。芘衍生物在它们之中表现出最优异的基于准分子的AIE行为。当与普朗尼克F-127形成纳米颗粒时,它们都比没有普朗尼克F-127时更易于表现出准分子发射。此外,PETP被用于活的Hela细胞的生物成像,并观察到了高分辨率图像。