College of Chemistry and Chemical Engineering, Henan Polytechnic University, No. #2001 Shiji Road, Jiaozuo, Henan, 454000, China.
Mikrochim Acta. 2024 Apr 1;191(4):225. doi: 10.1007/s00604-024-06306-3.
An intelligent fluorescent nanoprobe (lignite-CDs-Eu) was constructed by an effective and facile method based on lignite-derived carbon dots (CDs) and lanthanide europium ions (Eu), which exhibited high sensitivity, low detection limit (13.35 nM) and visual color variation (from blue to red) under ultraviolet light towards tetracycline (TC) detection. Significantly, portable and economical sensors were developed using lignite-CDs-Eu immobilized fiber material of filter paper and wearable glove with the aid of color extracting and image processing application (APP) in the smartphone. Facile, fast and real-time visual detection of TC in food samples was realized. Moreover, logic gate circuit was also designed to achieve intelligent and semi-quantitative inspection of TC. To some extent, this study extended the cross-application of intelligent computer software in food analytical science, and provided a certain reference for the development of small portable detection sensors which were suitable for convenience and non-professional use in daily life.
一种智能荧光纳米探针(褐煤-CDs-Eu)是通过一种有效且简便的方法构建的,该方法基于褐煤衍生的碳点(CDs)和镧系元素铕离子(Eu),在紫外光下对四环素(TC)检测表现出高灵敏度、低检测限(13.35 nM)和视觉颜色变化(从蓝色变为红色)。值得注意的是,便携式和经济型传感器是使用褐煤-CDs-Eu 固定在滤纸纤维材料和可穿戴手套上开发的,智能手机中颜色提取和图像处理应用程序(APP)提供了辅助。实现了对食品样品中 TC 的简便、快速和实时可视化检测。此外,还设计了逻辑门电路,以实现对 TC 的智能和半定量检测。在某种程度上,这项研究扩展了智能计算机软件在食品分析科学中的交叉应用,为开发适合日常生活中方便和非专业使用的小型便携式检测传感器提供了一定的参考。