State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2012 Nov;97:746-52. doi: 10.1016/j.saa.2012.07.010. Epub 2012 Jul 16.
The sensing mechanism for fluoride chemosensor based on anthracene structure has been investigated by DFT and TDDFT methods. The results show that the similar geometries in S(0) and S(1) states in the absence of the fluoride anion induce the local excited (LE) state over the anthracene moiety, which is responsible for the strong fluorescence. The fluorescence quenching phenomenon for F-coordinated complex can be explained by the photoinduced electron transfer (PET) process from benzylic amide to anthracene moiety. Moreover, the strong electronegativity for fluoride anion in the F-complex constructs the intermolecular hydrogen bond of N-H…F in the ground state. In contrast, the upper proton in the urea group close to phenyl group prefers to bind fluoride anion in S(1) state of the F-complex, and it presents excited-state proton transfer (ESPT) to form another hydrogen bond like N…H-F, which has been confirmed by natural bond orbital (NBO) analysis and the potential energy curve of S(1) state for the function of N-H bond. In this novel and efficient fluoride fluorescent chemosensor based on anthracene, the anthracene moiety is regarded as not only the fluorescent source, but the template for introducing the binding sites for fluoride anion.
基于蒽结构的氟化物化学传感器的传感机制已通过 DFT 和 TDDFT 方法进行了研究。结果表明,在不存在氟阴离子的情况下,S(0)和 S(1)态中的相似几何形状导致蒽部分出现局部激发(LE)态,这是强荧光的原因。对于 F-配位配合物的荧光猝灭现象可以通过从苄基酰胺到蒽部分的光致电子转移(PET)过程来解释。此外,氟阴离子在 F-配合物中的强电负性在基态中构建了 N-H…F 的分子间氢键。相比之下,在 F-配合物的 S(1)态中,靠近苯基的脲基上的上质子更倾向于与氟阴离子结合,并且通过自然键轨道(NBO)分析和 S(1)态的势能曲线来形成另一个氢键,就像 N…H-F 一样,这已经得到了证实。在这个基于蒽的新型高效氟化物荧光化学传感器中,蒽部分不仅被视为荧光源,而且被视为引入氟阴离子结合位点的模板。