School of Chemistry, South China Normal University; Key Laboratory of Theoretical Chemistry of Environment, Ministry of Education; Guangzhou Key Laboratory of Analytical Chemistry for Biomedicine; GDMPA Key Laboratory for Process Control and Quality Evaluation of Chiral Pharmaceuticals, Guangzhou 510006, PR China.
Key Laboratory of Functional Molecular Engineering of Guangdong Province, South China University of Technology, Guangzhou 510640, PR China.
Food Chem. 2023 Dec 1;428:136800. doi: 10.1016/j.foodchem.2023.136800. Epub 2023 Jul 6.
Developing potentially toxic metal ion probes is significant for environment and food safety. Although Hg probes have been extensively studied, small molecule fluorophores that can integrate two applications of visual detection and separation into one unit remain challenging to access. Herein, by incorporating triphenylamine (TPA) into tridentate skeleton with an acetylene bridge, 2,6-bisbenzimidazolpyridine-TPA (4a), 2,6-bisbenzothiazolylpyridine-TPA (4b) and 2,6-bisbenzothiazolylpyridine-TPA (4c) were first constructed, expectably showing distinct solvatochromism and dual-state emission properties. Since the diverse emission properties, the fluorescence detection of 4a-4b can be achieved with an ultrasensitive response (LOD = 10 M) and efficient removal of Hg. More interestingly, 4a-4b can not only be developed into paper/film sensing platform, but also reliably detect Hg in real water and seaweed samples, with recoveries ranging from 97.3% to 107.8% and a relative standard deviation of less than 5%, indicating that they have excellent application potential in the field of environmental and food chemistry.
开发潜在毒性金属离子探针对于环境和食品安全至关重要。尽管汞探针已得到广泛研究,但能够将视觉检测和分离两种应用集成到一个单元中的小分子荧光团仍然难以实现。在此,通过将三苯胺(TPA)引入具有乙炔桥的三齿骨架中,首次构建了 2,6-双苯并咪唑吡啶-TPA(4a)、2,6-双苯并噻唑基吡啶-TPA(4b)和 2,6-双苯并噻唑基吡啶-TPA(4c),期望表现出明显的溶剂化变色和双态发射性质。由于具有不同的发射性质,4a-4b 的荧光检测可以实现超灵敏响应(LOD=10 M)和高效去除 Hg。更有趣的是,4a-4b 不仅可以开发成纸/膜传感平台,还可以可靠地检测实际水样和海藻样品中的 Hg,回收率范围为 97.3%至 107.8%,相对标准偏差小于 5%,表明它们在环境和食品化学领域具有极好的应用潜力。