Chemistry and Chemical Engineering College, Qufu Normal University, Qufu, Shandong 273165, PR China.
Chemistry and Chemical Engineering College, Qufu Normal University, Qufu, Shandong 273165, PR China.
J Hazard Mater. 2024 May 5;469:134021. doi: 10.1016/j.jhazmat.2024.134021. Epub 2024 Mar 12.
Nitrite (NO) is categorized as a carcinogenic substance and is subjected to severe limitations in water and food. To safeguard the public's health, developing fast and convenient methods for determination of NO is of significance. Point-of-care testing (POCT) affords demotic measurement of NO and shows huge potential in future technology beyond those possible with traditional methods. Here, a novel ratiometric fluorescent nanoprobe (Ru@MOF-NH) is developed by integrating UiO-66-NH with tris(2,2'-bipyridyl)ruthenium(II) ([Ru(bpy)]) through a one-pot approach. The special diazo-reaction between the amino group of UiO-66-NH and NO is responsible for the report signal (blue emission) with high selectivity and the red emission from [Ru(bpy)] offers the reference signal. The proposed probe shows obviously distinguishable color change from blue to red towards NO via naked-eye. Moreover, using a smartphone as the detection device to read color hue, ultra-sensitive quantitative detection of NO is achieved with a low limit of detection at 0.6 μΜ. The accuracy and repeatability determined in spiked samples through quantitative visualization is in the range of 105 to 117% with a coefficient of variation below 4.3%. This POCT sensing platform presents a promising strategy for detecting NO and expands the potential applications for on-site monitoring in food and environment safety assessment.
亚硝酸盐(NO)被归类为致癌物质,在水和食品中受到严格限制。为了保障公众健康,开发快速便捷的 NO 测定方法具有重要意义。即时检测(POCT)可以实现对 NO 的普及性测量,在未来技术方面具有比传统方法更大的潜力。在此,通过一锅法将 UiO-66-NH 与三(2,2'-联吡啶)钌(II)([Ru(bpy)]) 相结合,开发了一种新型的比率荧光纳米探针(Ru@MOF-NH)。UiO-66-NH 中的氨基与 NO 之间的特殊重氮反应负责产生高选择性的报告信号(蓝色发射),[Ru(bpy)] 的红色发射提供参考信号。该探针对 NO 具有明显的可分辨的颜色变化,从蓝色变为红色,肉眼可见。此外,通过智能手机作为检测设备读取颜色色调,该探针实现了对 NO 的超灵敏定量检测,检测限低至 0.6 μΜ。通过定量可视化在加标样品中确定的准确性和重复性在 105%至 117%范围内,变异系数低于 4.3%。该 POCT 传感平台为检测 NO 提供了一种有前途的策略,并扩展了在食品安全和环境评估中现场监测的潜在应用。