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铽(III)/金纳米簇共轭物:一种用于汞(II)的新型比率荧光探针及纸质视觉传感器的开发。

Terbium(III)/gold nanocluster conjugates: the development of a novel ratiometric fluorescent probe for mercury(II) and a paper-based visual sensor.

作者信息

Qi Yan-Xia, Zhang Min, Zhu Anwei, Shi Guoyue

机构信息

Department of Chemistry, School of Chemistry and Molecular Engineering, East China Normal University, 500 Dongchuan Road, Shanghai 200241, China.

出版信息

Analyst. 2015 Aug 21;140(16):5656-61. doi: 10.1039/c5an00802f.

Abstract

In this work, a novel ratiometric fluorescent probe was developed for rapid, highly accurate, sensitive and selective detection of mercury(II) (Hg(2+)) based on terbium(III)/gold nanocluster conjugates (Tb(3+)/BSA-AuNCs), in which bovine serum albumin capped gold nanoclusters (BSA-AuNCs) acted as the signal indicator and terbium(III) (Tb(3+)) was used as the build-in reference. Our proposed ratiometric fluorescent probe exhibited unique specificity toward Hg(2+) against other common environmentally and biologically important metal ions, and had high accuracy and sensitivity with a low detection limit of 1 nM. In addition, our proposed probe was effectively employed to detect Hg(2+) in the biological samples from the artificial Hg(2+)-infected rats. More significantly, an appealing paper-based visual sensor for Hg(2+) was designed by using filter paper embedded with Tb(3+)/BSA-AuNC conjugates, and we have further demonstrated its feasibility for facile fluorescent sensing of Hg(2+) in a visual format, in which only a handheld UV lamp is used. In the presence of Hg(2+), the paper-based visual sensor, illuminated by a handheld UV lamp, would undergo a distinct fluorescence color change from red to green, which can be readily observed with naked eyes even in trace Hg(2+) concentrations. The Tb(3+)/BSA-AuNC-derived paper-based visual sensor is cost-effective, portable, disposable and easy-to-use. This work unveiled a facile approach for accurate, sensitive and selective measuring of Hg(2+) with self-calibration.

摘要

在本研究中,基于铽(III)/金纳米簇缀合物(Tb(3+)/BSA-AuNCs)开发了一种新型比率荧光探针,用于快速、高精度、灵敏且选择性地检测汞(II)(Hg(2+))。其中,牛血清白蛋白包覆的金纳米簇(BSA-AuNCs)作为信号指示剂,铽(III)(Tb(3+))用作内置参比。我们提出的比率荧光探针对Hg(2+)展现出相对于其他常见环境和生物重要金属离子的独特特异性,具有高精度和灵敏度,检测限低至1 nM。此外,我们提出的探针有效地用于检测人工感染Hg(2+)的大鼠生物样品中的Hg(2+)。更重要的是,通过使用嵌入Tb(3+)/BSA-AuNC缀合物的滤纸设计了一种吸引人的用于Hg(2+)的纸质视觉传感器,并且我们进一步证明了其以视觉形式对Hg(2+)进行简便荧光传感的可行性,其中仅使用手持式紫外灯。在Hg(2+)存在下,由手持式紫外灯照射的纸质视觉传感器会发生从红色到绿色的明显荧光颜色变化,即使在痕量Hg(2+)浓度下也能用肉眼轻易观察到。基于Tb(3+)/BSA-AuNC的纸质视觉传感器具有成本效益、便携、一次性使用且易于操作。这项工作揭示了一种通过自校准准确、灵敏且选择性地测量Hg(2+)的简便方法。

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