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Fluorescent Ag Clusters via a Protein-Directed Approach as a Hg(II) Ion Sensor

机译:荧光银团簇通过蛋白质定向方法作为Hg(II)离子传感器

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Proteins have proven to be particularly attractive as effective ligands in the synthesis of nano- and subnanoscaled materials because of their multiple chelating and functional groups imparting unique functionalities. However, protein-directed fluorescent metal cluster synthesis is still a challenge but a promising area of research. Here, we report on the synthesis of new water-soluble, stable, fluorescent Ag dusters via a facile, green method using denatured bovine serum albumin (dBSA) as a stabilizing agent. The dBSA with its 35 free cysteine residues could contribute to polyvalent interactions with the Ag clusters and serve as effective stabilizing agents for these clusters. The as-prepared Ag clusters showed high fluorescence emission at approx637 nm and were stable even in 1 M NaCl. The fluorescent Ag clusters were then used in the detection of Hg~(2+) with high sensitivity and selectivity. The detection limit was 10 nM in the linear range from 10 nM to 5 (mu)M.
机译:事实证明,蛋白质在合成纳米和亚纳米级材料中作为有效的配体特别有吸引力,因为它们具有多种螯合和赋予独特功能的官能团。然而,蛋白质指导的荧光金属簇的合成仍然是一个挑战,但是是一个有前途的研究领域。在这里,我们报告了通过使用变性的牛血清白蛋白(dBSA)作为稳定剂的简便,绿色方法合成新型水溶性,稳定的荧光银粉尘。具有35个游离半胱氨酸残基的dBSA可能有助于与Ag簇发生多价相互作用,并成为这些簇的有效稳定剂。制备的Ag团簇在约637 nm处显示高荧光发射,即使在1 M NaCl中也稳定。荧光银团簇用于高灵敏度和高选择性的Hg〜(2+)检测。在10 nM至5μM的线性范围内,检测限为10 nM。

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