Li Lihong, Zhang Min, Chang Kaijing, Kang Yu, Ren Guodong, Hou Xiaoyu, Liu Wen, Wang Haojiang, Wang Bin, Diao Haipeng
Department of Biochemistry and Molecular Biology, Shanxi Medical University Taiyuan 030001 PR China
School of Basic Medical Sciences, Shanxi Medical University Taiyuan 030001 PR China.
RSC Adv. 2019 Oct 10;9(55):32308-32312. doi: 10.1039/c9ra06342k. eCollection 2019 Oct 7.
A highly sensitive and selective fluorescent probe for fluoride ions has been developed by incorporating the dimethylphosphinothionyl group as a recognition moiety into the fluorophore of coumarin. The detection mechanism is based on the fluoride ion-triggered cleavage of the dimethylphosphinothionyl group, followed by the release of coumarin, which leads to a large fluorescence enhancement at 455 nm ( = 385 nm). Under the optimized conditions, the fluorescence enhancement of the probe is directly proportional to the concentration of fluoride ions in the range of 0-30 μM with a detection limit of 0.29 μM, which is much lower than the maximum content of fluoride ions guided by WHO. Notably, satisfying results have been obtained by utilizing the probe to determine fluoride ions in real-water samples and commercially available toothpaste samples. The proposed probe is rather simple and may be useful in the detection of fluoride ions in more real samples.
通过将二甲基亚膦酰硫基作为识别基团引入香豆素荧光团,开发了一种对氟离子具有高灵敏度和选择性的荧光探针。检测机制基于氟离子引发的二甲基亚膦酰硫基的裂解,随后香豆素释放,这导致在455 nm(λex = 385 nm)处荧光大幅增强。在优化条件下,探针的荧光增强与0 - 30 μM范围内氟离子浓度成正比,检测限为0.29 μM,远低于世界卫生组织规定的氟离子最大含量。值得注意的是,利用该探针测定实际水样和市售牙膏样品中的氟离子已获得令人满意的结果。所提出的探针相当简单,可能有助于在更多实际样品中检测氟离子。