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Methionine-Capped Gold Nanoclusters as a Fluorescence-Enhanced Probe for Cadmium(II) Sensing

机译:蛋氨酸覆盖的金纳米团簇作为荧光增强的镉(II)传感探针。

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摘要

Gold nanoclusters (Au NCs) have been considered as novel heavy metal ions sensors due to their ultrafine size, photo-stability and excellent fluorescent properties. In this study, a green and facile method was developed for the preparation of fluorescent water-soluble gold nanoclusters with methionine as a stabilizer. The nanoclusters emit orange fluorescence with excitation/emission peaks at 420/565 nm and a quantum yield of about 1.46%. The fluorescence of the Au NCs is selectively and sensitively enhanced by addition of Cd(II) ions attributed to the Cd(II) ion-induced aggregation of nanoclusters. This finding was further used to design a fluorometric method for the determination of Cd(II) ions, which had a linear response in the concentration range from 50 nM to 35 μM and a detection limit of 12.25 nM. The practicality of the nanoprobe was validated in various environmental water samples and milk powder samples, with a fairly satisfactory recovery percent.
机译:金纳米团簇(Au NCs)由于其超细的尺寸,光稳定性和出色的荧光性能而被认为是新型的重金属离子传感器。在这项研究中,开发了一种绿色简便的方法来制备以蛋氨酸为稳定剂的荧光水溶性金纳米簇。纳米团簇发出橙色荧光,其激发/发射峰在420/565 nm处,量子产率约为1.46%。通过添加归因于Cd(II)离子诱导的纳米团簇的Cd(II)离子,选择性和灵敏地增强了Au NCs的荧光。该发现进一步用于设计荧光法测定Cd(II)离子,该方法在浓度范围为50 nM至35μM时具有线性响应,检测极限为12.25 nM。纳米探针的实用性已在各种环境水样品和奶粉样品中得到验证,回收率相当令人满意。

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