Du Man, Song Meimei, Hou Shuang, Zhang Yue, Lv Haijun, Zhao Shuchun, Du Hongxia, Guo Hongyong
College of Chemical and Pharmaceutical Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, P. R. China.
Hebei Lansheng Bio-Tech Co, Ltd, Shijiazhuang, 052263, P. R. China.
Mikrochim Acta. 2025 Jan 20;192(2):96. doi: 10.1007/s00604-025-06959-8.
A novel fluorescence sensing nanoplatform (CDs/AuNCs@ZIF-8) encapsulating carbon dots (CDs) and gold nanoclusters (AuNCs) within a zeolitic imidazolate framework-8 (ZIF-8) was developed for ratiometric detection of formaldehyde (FA) in the medium of hydroxylamine hydrochloride (NHOH·HCl). The nanoplatform exhibited pink fluorescence due to the aggregation-induced emission (AIE) effect of AuNCs and the internal filtration effect (IFE) between AuNCs and CDs. Upon reaction between NHOH·HCl and FA, a Schiff base formed via aldehyde-diamine condensation, releasing hydrochloric acid. The acid triggered the degradation of ZIF-8, releasing CDs and AuNCs, and thereby shifting the fluorescence to blue as the CDs disperse. The nanoplatform demonstrated high sensitivity (LOD of 0.26-2.19 μM), exceptional selectivity, and rapid response time (<1 min) toward FA. Additionally, test strips and hydrogel films integrated with smartphones were prepared for on-site and visual detection of FA. The portable and smartphone-assisted test strips effectively detected indoor FA gas, while wearable and intelligent hydrogel films provided reliable surface measurements of FA on fruits and vegetables. Real sample analyses achieved satisfactory FA recoveries (99.06-115.30%) with relative standard deviations (RSD) from 1.86% to 3.81%. The innovative sensing nanoplatform served as a promising approach for FA detection in food, construction materials, and indoor air quality, offering both analytical accuracy and convenient visualization.
一种新型荧光传感纳米平台(CDs/AuNCs@ZIF-8)被开发出来,该平台将碳点(CDs)和金纳米簇(AuNCs)封装在沸石咪唑酯骨架-8(ZIF-8)中,用于在盐酸羟胺(NHOH·HCl)介质中对甲醛(FA)进行比率检测。由于AuNCs的聚集诱导发光(AIE)效应以及AuNCs与CDs之间的内滤效应(IFE),该纳米平台呈现出粉色荧光。当NHOH·HCl与FA反应时,通过醛 - 二胺缩合形成席夫碱,释放出盐酸。酸引发ZIF-8的降解,释放出CDs和AuNCs,从而随着CDs分散,荧光转变为蓝色。该纳米平台对FA表现出高灵敏度(检测限为0.26 - 2.19 μM)、出色的选择性和快速响应时间(<1分钟)。此外,还制备了与智能手机集成的测试条和水凝胶膜,用于现场和可视化检测FA。便携式且借助智能手机的测试条有效地检测了室内FA气体,而可穿戴且智能的水凝胶膜提供了对水果和蔬菜表面FA的可靠测量。实际样品分析实现了令人满意的FA回收率(99.06 - 115.30%),相对标准偏差(RSD)为1.86%至3.81%。这种创新的传感纳米平台为食品、建筑材料和室内空气质量中的FA检测提供了一种有前景的方法,兼具分析准确性和便捷可视化。