Wang Dan, Li Shao-Jie, Cao Wei, Wang Zheng, Ma Yangmin
Key Laboratory of Chemical Additives for China National Light Industry, College of Chemistry and Chemical Engineering, Shaanxi University of Science and Technology, Xi'an 710021, People's Republic of China.
Scientific Instrument Center, Shanxi University, Taiyuan 030006, People's Republic of China.
ACS Omega. 2022 May 18;7(21):18017-18026. doi: 10.1021/acsomega.2c01414. eCollection 2022 May 31.
A D-π-A type quinoline derivative, 2-(((4-(1, 2, 2-triphenylvinyl)phenyl)imino)methyl)quinolin-8-ol (), was synthesized and structurally characterized. The five-membered ring formed by the O-H···N hydrogen bond in contributed to the excited-state intramolecular proton transfer (ESIPT) behavior of , which was further verified by theoretical computations. Upon coordination with Zn, the hydroxyl proton in was removed, resulting in the inhibition of ESIPT. In the meanwhile, the formed complex displayed aggregation-induced emission (AIE) character in THF/HO mixtures, which is conducive to the fluorescence enhancement in aqueous media. Structure analysis suggested that the origin of the AIE characteristic was attributed to restriction of intramolecular rotations along with the formation of -aggregates. Based on ESIPT coupled with AIE, could recognize Zn(II) in aqueous media via an orange fluorescence turn-on mode. Benefitting from the AIE property, chemosensor was successfully applied to fabricate test strips for rapid sensing of Zn(II) ions.
合成并表征了一种D-π-A型喹啉衍生物2-(((4-(1,2,2-三苯基乙烯基)苯基)亚氨基)甲基)喹啉-8-醇()。中由O-H···N氢键形成的五元环促成了的激发态分子内质子转移(ESIPT)行为,理论计算进一步证实了这一点。与Zn配位后,中的羟基质子被去除,导致ESIPT受到抑制。同时,形成的配合物在THF/H₂O混合物中表现出聚集诱导发光(AIE)特性,这有利于在水性介质中荧光增强。结构分析表明,AIE特性的起源归因于分子内旋转受限以及-聚集体的形成。基于ESIPT与AIE相结合,可通过橙色荧光开启模式在水性介质中识别Zn(II)。受益于AIE特性,化学传感器成功应用于制备用于快速检测Zn(II)离子的测试条。