Wu Xi-Jin, Kong Fan, Zhao Chun-Qin, Ding Shou-Nian
Jiangsu Province Hi-Tech Key Laboratory for Bio-medical Research, School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, China.
Analyst. 2019 Apr 8;144(8):2523-2530. doi: 10.1039/c8an02414f.
Ratiometric fluorescent nanosensors were developed to detect mercury ions (Hg2+) using enhanced dual emissions from glutathione stabilized gold nanoclusters/indium-based metal-organic frameworks modified with cysteine (AuNCs/MIL-68(In)-NH2/Cys). The nanosensors exhibited bright pink fluorescence with AuNCs evenly distributed on MIL-68(In)-NH2. Under 370 nm excitation, the obtained sensor presented double fluorescence emission around 438 nm and 668 nm, which was attributed to MIL-68(In)-NH2 and GSH-AuNCs, respectively. The fluorescence emission was remarkably enhanced after modification with Cys. In the presence of Hg2+, the red fluorescence peak at 668 nm was quenched, while the blue fluorescence peak at 438 nm was slightly altered. The prepared AuNCs/MIL-68(In)-NH2/Cys nanosensors exhibited two linear ranges for the detection of Hg2+, namely from 20 pM to 0.2 μM and 0.2 μM to 60 μM, with a detection limit of 6.7 pM. They also presented high selectivity towards other ions and good performance in real water samples. Moreover, a radial star-shaped microfluidic paper-based analytical device (μPAD), as a straightforward and convenient platform, was successfully fabricated for the visual detection of Hg2+ with a wide detection range from 5 nM to 50 μM.
开发了比率荧光纳米传感器,用于检测汞离子(Hg2+),该传感器利用谷胱甘肽稳定的金纳米簇/用半胱氨酸修饰的铟基金属有机框架(AuNCs/MIL-68(In)-NH2/Cys)的增强双发射。纳米传感器呈现亮粉色荧光,AuNCs均匀分布在MIL-68(In)-NH2上。在370nm激发下,所得传感器在438nm和668nm左右呈现双重荧光发射,分别归因于MIL-68(In)-NH2和GSH-AuNCs。用半胱氨酸修饰后,荧光发射显著增强。在Hg2+存在下,668nm处的红色荧光峰猝灭,而438nm处的蓝色荧光峰略有变化。制备的AuNCs/MIL-68(In)-NH2/Cys纳米传感器对Hg2+的检测呈现两个线性范围,即从20pM到0.2μM和0.2μM到60μM,检测限为6.7pM。它们对其他离子也具有高选择性,并且在实际水样中表现良好。此外,作为一种简单方便的平台,成功制备了一种径向星形微流控纸基分析装置(μPAD),用于目视检测Hg2+,检测范围宽,从5nM到50μM。