College of Science, Shenyang University of Chemical Technology, Shenyang 110142, P. R. China.
State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, P. R. China.
J Phys Chem A. 2022 May 12;126(18):2788-2793. doi: 10.1021/acs.jpca.2c00782. Epub 2022 May 3.
HS is an important signal molecule in living systems and related with many physiological processes and diseases. Rapid detection of HS, hence, is important for studying physiological processes and early diagnosis of diseases. Deep insight into the sensing mechanism is significant and inspiring for the design and modification of high-efficiency HS probes. The current study has theoretically investigated the recognition and fluorescence mechanism of a newly reported high-efficiency HS probe. The recognition mechanism is determined to be the reaction between the probe and HS anion, the rationality of which is further confirmed from the fluorescence property of the recognition product. The non-fluorescence property of the probe attributes to a photoinduced electron transfer process, and the turn-on fluorescence upon exposure to HS exhibits an intramolecular charge transfer property according to frontier molecular orbital analysis.
HS 是生命体系中的一种重要信号分子,与许多生理过程和疾病都有关联。因此,HS 的快速检测对于研究生理过程和疾病的早期诊断非常重要。深入了解其传感机制对于设计和改进高效 HS 探针具有重要意义和启发。本研究从理论上研究了一种新报道的高效 HS 探针的识别和荧光机制。识别机制被确定为探针与 HS 阴离子的反应,其合理性从识别产物的荧光性质进一步得到证实。探针的非荧光性质归因于光致电子转移过程,而暴露于 HS 时的开启荧光根据前沿分子轨道分析表现出分子内电荷转移性质。