Wang Yang, Mu Hongyan, Sun Yuhang, Gao Jiaan, Zhu Xiaodong, Li Hui
Jilin Key Laboratory of Solid-State Laser Technology and Application, School of Physics, Changchun University of Science and Technology, Changchun 130022, China.
Molecules. 2024 Apr 5;29(7):1629. doi: 10.3390/molecules29071629.
As reversible fluorescent probes, HTP-1 and HTP-2 have favourable applications for the detection of Zn and HS. Herein, the impact of solvent on the excited-state intramolecular proton transfer (ESIPT) of HTP-1 and HTP-2 was comprehensively investigated. The obtained geometric parameters and infrared (IR) vibrational analysis associated with the intramolecular hydrogen bond (IHB) indicated that the strength of IHB for HTP-1 was weakened in the excited state. Moreover, structural torsion and almost no ICT behaviour indicated that the ESIPT process did not occur in HTP-1. Nevertheless, when the 7-nitro-1,2,3-benzoxadiazole (NBD) group replaced the H atom, the IHB strength of HTP-2 was enhanced after photoexcitation, which inhibited the twisting of tetraphenylethylene, thereby opening the ESIPT channel. Notably, hole-electron analysis and frontier molecular orbitals revealed that the charge decoupling effect was the reason for the fluorescence quenching of HTP-2. Furthermore, the potential energy curves (PECs) revealed that HTP-2 was more inclined to the ESIPT process in polar solvents than in nonpolar solvents. With a decrease in solvent polarity, it was more conducive to the ESIPT process. Our study systematically presents the ESIPT process and different detection mechanisms of the two reversible probe molecules regulated by solvent polarity, providing new insights into the design and development of novel fluorescent probes.
作为可逆荧光探针,HTP-1和HTP-2在锌离子和硫氢根离子的检测方面具有良好的应用前景。在此,全面研究了溶剂对HTP-1和HTP-2激发态分子内质子转移(ESIPT)的影响。所获得的与分子内氢键(IHB)相关的几何参数和红外(IR)振动分析表明,HTP-1的IHB强度在激发态下减弱。此外,结构扭转和几乎不存在的电荷转移(ICT)行为表明HTP-1中未发生ESIPT过程。然而,当7-硝基-1,2,3-苯并恶二唑(NBD)基团取代氢原子时,光激发后HTP-2的IHB强度增强,这抑制了四苯基乙烯的扭转,从而打开了ESIPT通道。值得注意的是,空穴-电子分析和前线分子轨道表明电荷解耦效应是HTP-2荧光猝灭的原因。此外,势能曲线(PEC)表明,与非极性溶剂相比,HTP-2在极性溶剂中更倾向于发生ESIPT过程。随着溶剂极性的降低,更有利于ESIPT过程。我们的研究系统地展示了由溶剂极性调节的两种可逆探针分子的ESIPT过程和不同的检测机制,为新型荧光探针的设计和开发提供了新的见解。