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基于镁氮共掺杂碳点和金属有机框架的新型双发射荧光印迹传感器用于快速智能检测2,4,6-三硝基苯酚

Novel dual-emission fluorescence imprinted sensor based on Mg, N-CDs and metal-organic frameworks for rapid and smart detection of 2, 4, 6-trinitrophenol.

作者信息

Yang Lidong, Hu Wei, Pei Fubin, Du Bin, Tong Zhaoyang, Mu Xihui, Xia Mingzhu, Wang Fengyun, Liu Bing

机构信息

School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, Jiangsu, China; State Key Laboratory of NBC Protection for Civilian, Beijing, 102205, China.

State Key Laboratory of NBC Protection for Civilian, Beijing, 102205, China.

出版信息

Talanta. 2024 Jan 1;266(Pt 2):125115. doi: 10.1016/j.talanta.2023.125115. Epub 2023 Aug 25.

DOI:10.1016/j.talanta.2023.125115
PMID:37657376
Abstract

Rapid and real-time detection of 2, 4, 6-trinitrophenol (TNP) is of great importance for the living environment and human health. Herein, we constructed an innovative ratiometric fluorescence imprinted sensor with fast response and high selectivity based on magnesium and nitrogen co-doped carbon dots (Mg, N-CDs) and chromium telluride quantum dots (r-CdTe) self-assembled in zirconium-based metal organic frameworks (UiO-66) combined with imprinted polymers for the detection of TNP. In the protocol, the introduction of UiO-66 with large specific surface area and porosity using as carrier material significantly enhanced the mass transfer rate, which improved the sensitivity of the Mg, N-CDs/r-CdTe@UiO-66@MIP (LHU@MIP). And the Mg, N-CDs with high quantum yields and r-CdTe were selected as fluorescence emitting elements to yield fluorescence signal, achieving signal amplification. The dual-channel strategy enabled the sensor to not only display a fast fluorescence response, but also generate a dual-response signal under the action of internal filtering effect (IFE). Combining these advantages, the LHU@MIP had a wide linear range (1-100 μM), good detection sensitivity (0.56 μM), and a distinct color change (from blue to pink). Meanwhile, for accurate on-site analysis, we designed a portable smart sensing platform with a color recognizer application. The smartphone enabled visual sensing of TNP by capturing fluorescent images and converting them into digital values. More importantly, the platform was successfully utilized for the analysis of TNP in the simulated actual samples with considerable results. Therefore, the developed platform was characterized by low cost, portability, ideal specificity, and provided a strategy for on-site monitoring of TNP.

摘要

快速实时检测2,4,6-三硝基苯酚(TNP)对生活环境和人类健康具有重要意义。在此,我们构建了一种基于镁氮共掺杂碳点(Mg,N-CDs)和碲化铬量子点(r-CdTe)自组装在锆基金属有机框架(UiO-66)中并结合印迹聚合物的创新型比率荧光印迹传感器,用于检测TNP。在该方案中,引入具有大比表面积和孔隙率的UiO-66作为载体材料,显著提高了传质速率,从而提高了Mg,N-CDs/r-CdTe@UiO-66@MIP(LHU@MIP)的灵敏度。选择具有高量子产率的Mg,N-CDs和r-CdTe作为荧光发射元件以产生荧光信号,实现信号放大。双通道策略使传感器不仅能显示快速的荧光响应,还能在内滤效应(IFE)作用下产生双响应信号。结合这些优点,LHU@MIP具有宽线性范围(1-100μM)、良好的检测灵敏度(0.56μM)和明显的颜色变化(从蓝色变为粉红色)。同时,为了进行准确的现场分析,我们设计了一个带有颜色识别器应用程序的便携式智能传感平台。智能手机通过捕获荧光图像并将其转换为数字值,实现了对TNP的视觉传感。更重要的是,该平台成功用于模拟实际样品中TNP的分析,结果相当可观。因此,所开发的平台具有低成本、便携、理想的特异性等特点,并为TNP的现场监测提供了一种策略。

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