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一种基于硫掺杂硼碳氮量子点和金纳米簇的比率荧光传感器,与3D打印便携式设备相结合用于检测孔雀石绿。

A ratiometric fluorescent sensor based on S-doped BCNO quantum dots and Au nanoclusters combined with 3D-printing portable device for the detection of malachite green.

作者信息

Li Wenhao, Liu Fang, He Yu, Song Gongwu

机构信息

Ministry of Education, Key Laboratory for the Synthesis and Application of Organic Functional Molecules, Hubei Province Key Laboratory for Precision Manufacturing of Small Molecular Active Pharmaceutical Ingredients, College of Chemistry and Chemical Engineering, Hubei University, Wuhan, 430062, China.

出版信息

Mikrochim Acta. 2024 Jun 14;191(7):394. doi: 10.1007/s00604-024-06465-3.

Abstract

Sulfur-doped BCNO quantum dots (S-BCNO QDs) emitting green fluorescence were prepared by elemental doping method. The ratiometric fluorescence probe with dual emissions was simply established by mixed S-BCNO QDs with gold nanoclusters (GSH-Au NCs). Because the emission spectrum of Au NCs (donor) at 615 nm overlapped well with the ultraviolet absorption of malachite green (MG), fluorescence resonance energy transfer (FRET) can be achieved. When the concentration of MG increased, the fluorescence intensity (F) of S-BCNO QDs decreased slowly, while the fluorescence intensity (F) of Au NCs decreased sharply. The fluorescence intensity ratio of F/F decreased with the increase of MG. By plotting the F/F values against MG concentration, a sensitive and rapid detection of MG was possible with a wide detection range (0.1-50 µM) and a low detection limit of 10 nM. Due to the accompanying fluorescence color change from pink to blue-green, it can be used for visual detection. A three dimensional-printing device utilizing digital image colorimetry to capture color changes through the built-in camera, enables quantitative detection of MG with a good linearity between the values of red/green ratio and MG concentrations at the range 1-50 µM. This sensing platform had a range of advantages, including high cost-effectiveness, portability, ease of operation, and high sensitivity. Furthermore, the sensing platform was successfully applied to the detection of MG in real water sample and fish samples, thereby verifying the reliability and effectiveness of this sensing platform in water quality monitoring and food safety.

摘要

通过元素掺杂法制备了发射绿色荧光的硫掺杂BCNO量子点(S-BCNO QDs)。将S-BCNO量子点与金纳米团簇(GSH-Au NCs)混合,简单地构建了具有双发射的比率荧光探针。由于金纳米团簇(供体)在615nm处的发射光谱与孔雀石绿(MG)的紫外吸收光谱有很好的重叠,因此可以实现荧光共振能量转移(FRET)。当MG浓度增加时,S-BCNO量子点的荧光强度(F)缓慢下降,而金纳米团簇的荧光强度(F)急剧下降。F/F的荧光强度比值随MG的增加而降低。通过绘制F/F值与MG浓度的关系图,可以在宽检测范围(0.1 - 50µM)和低检测限10 nM下灵敏快速地检测MG。由于伴随有从粉红色到蓝绿色的荧光颜色变化,它可用于视觉检测。一种利用数字图像比色法通过内置摄像头捕获颜色变化的三维打印装置,能够在1 - 50µM范围内对MG进行定量检测,红色/绿色比值与MG浓度之间具有良好的线性关系。该传感平台具有一系列优点,包括高性价比、便携性、操作简便和高灵敏度。此外,该传感平台成功应用于实际水样和鱼样中MG的检测,从而验证了该传感平台在水质监测和食品安全方面的可靠性和有效性。

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