Department of Chemistry, Research Center for Analytical Sciences, College of Sciences, Northeastern University, Box 332, Shenyang, 110819, China.
Department of Chemistry, Research Center for Analytical Sciences, College of Sciences, Northeastern University, Box 332, Shenyang, 110819, China.
Talanta. 2024 May 15;272:125809. doi: 10.1016/j.talanta.2024.125809. Epub 2024 Feb 16.
The freshness of sea food has always been the focus of attention from consumers, and food-safety issues are in urgent need of efficient approaches. A HOF-based ratiometric fluorescence probe (HOF-FITC/Eu) featuring superior amine-response, offers the real-time and visual detection of seafood freshness. Via intermolecular hydrogen bond interaction to form hydrogen-bonded organic frameworks (HOFs), which serve as a structural basis for the conjugate loading of pH-sensitive fluorescein (5-FITC) and coordination doping of lanthanide Eu. Amine vapors stimulate the dual-wavelength (525 nm and 616 nm) characteristic fluorescence of HOF-FITC/Eu with an inverse trend, resulting in an increase of the ratio of I to I accompanied by a distinct color transition from red to green. Prepared HOF-FITC/Eu featuring sensitive red-green color change characteristics of amine response are readily dripped into composite films of filter paper through integrated smartphone and 254 nm UV lamp as mobile observation devices to on-site monitor the freshness of raw fish and shrimp samples. The intelligent food probe HOF-FITC/Eu opens a novel material assembly type for fluorescence sensing and a potential pathway for other functional materials in the field of investigational food.
海鲜的新鲜度一直是消费者关注的焦点,食品安全问题急需有效的方法来解决。一种基于 HOF 的比率荧光探针(HOF-FITC/Eu)具有优异的胺响应性能,可实时、可视化地检测海鲜的新鲜度。通过分子间氢键相互作用形成氢键有机框架(HOFs),作为 pH 敏感的荧光素(5-FITC)的共轭负载和镧系元素 Eu 的配位掺杂的结构基础。胺蒸气刺激 HOF-FITC/Eu 的双波长(525nm 和 616nm)特征荧光以相反的趋势,导致 I 与 I 的比值增加,并伴有从红色到绿色的明显颜色转变。制备的 HOF-FITC/Eu 具有灵敏的胺响应的红-绿颜色变化特征,可通过集成智能手机和 254nm UV 灯的滤纸复合膜滴注,作为移动观察设备,现场监测生鱼和虾样品的新鲜度。智能食品探针 HOF-FITC/Eu 为荧光传感开辟了一种新型的材料组装类型,并为研究食品领域的其他功能材料开辟了一条潜在途径。