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使用高荧光石墨烯量子点对自来水中的铁离子进行选择性、灵敏且无标记检测。

Selective, Sensitive and Label-Free Detection of Fe Ion in Tap Water Using Highly Fluorescent Graphene Quantum Dots.

作者信息

Zhang Yuanyuan, Yang Xiangyue, Pu Yunxun, Cheng Wei, Lin Song, Shao Zeyu, Liao Xiaoling

机构信息

Chongqing Key Laboratory of Nano/Micro Composite Materials and Devices, Chongqing University of Science and Technology, Chongqing, China.

出版信息

J Fluoresc. 2019 May;29(3):541-548. doi: 10.1007/s10895-019-02365-5. Epub 2019 Mar 22.

Abstract

Graphene quantum dots (GQDs) as a new type of fluorescent carbon nanomaterials, showing excellent photoluminescence properties, biocompatibility, photoelectric properties, have become the current research focus. Iron element as an essential element in the human body and an important part of hemoglobin, is very important for human health, so the detection of ferric ions has great significance. In this paper, GQDs with strong blue light emission were prepared through pyrolysis treatment using citric acid as a carbon source. Through characterization by transmission electron microscopy (TEM) and fluorescence spectrometer, it was observed that the GQDs have a uniform particle size distribution and highly fluorescent intensity with a quantum yield of 27.4%. Due to the strong quenching effect of Fe on GQDs fluorescence, GQDs was used as a green and facile fluorescence sensor to detect Fe selectively and sensitively. The GQDs fluorescence sensor shows a sensitive response to Fe in a wide linear range (3.5 × 10-6.7 × 10 M), a low detection limit of 1.6 μM (S/N = 3) and good selectivity. Importantly, the new sensor realizes the detection of Fe ions in tap water because of its low detection limit, wide linear range, and high sensitivity.

摘要

石墨烯量子点(GQDs)作为一种新型的荧光碳纳米材料,具有优异的光致发光性能、生物相容性和光电性能,已成为当前的研究热点。铁元素作为人体必需元素和血红蛋白的重要组成部分,对人体健康至关重要,因此铁离子的检测具有重要意义。本文以柠檬酸为碳源,通过热解处理制备了具有强蓝光发射的GQDs。通过透射电子显微镜(TEM)和荧光光谱仪表征,观察到GQDs粒径分布均匀,荧光强度高,量子产率为27.4%。由于Fe对GQDs荧光有强烈的猝灭作用,GQDs被用作一种绿色便捷的荧光传感器来选择性和灵敏地检测Fe。GQDs荧光传感器在宽线性范围(3.5×10 - 6.7×10 M)内对Fe表现出灵敏响应,检测限低至1.6 μM(S/N = 3)且选择性良好。重要的是,由于其低检测限、宽线性范围和高灵敏度,该新型传感器实现了自来水中Fe离子的检测。

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