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Red-emitting Au-7 nanoclusters with fluorescence sensitivity to Fe2+ ions

机译:红发射AU-7纳米蛋白,具有荧光敏感性至Fe2 +离子

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摘要

Luminescent gold nanoclusters have recently emerged as an important class of sensing and imaging materials in optical applications. Here we report a red-emitting gold nanocluster with a precise molecular formula of Au-7(DHLA)(2)Cl-2, synthesized via the size-focusing strategy using a bidentate ligand of dihydrolipoic acid (DHLA). This Au nanocluster is water-soluble and emits fluorescence at 683 nm with a quantum yield of 3.6% in water. The intense fluorescence of Au-7(DHLA)(2)Cl-2 originates from the aggregation of Au(I)-DHLA/Cl motifs on the Au(0) core in a rigid core/shell-like structure. Moreover, we find that trace levels of Fe2+ ions can quench selectively and sensitively the fluorescence of the Au-7(DHLA)(2)Cl-2 nanocluster, making it a potential fluorescent sensor for Fe2+ with a limit of detection of 3.8 mM (0.2 ppm). A dissociation-induced fluorescence quenching mechanism is also proposed to describe the fluorescence response of the nanocluster to Fe2+ ions.
机译:发光金纳米纳米纳米队最近被出现为光学应用中的重要感测和成像材料。 在这里,我们通过使用二氢甲酸(DHLA)的二硫代甲酸(DHLA)通过尺寸聚焦策略合成的AU-7(DHLA)(2)(2)CL-2的精确分子式的红色发光金纳米粉丝。 该Au nancluster是水溶性的,并在683nm下发射荧光,水中量为3.6%。 AU-7(DHLA)(2)CL-2的强烈荧光来自Au(i)-dhla / cl基序的聚集在刚性芯/壳状结构中的Au(0)芯上。 此外,我们发现痕量的Fe2 +离子可以选择性和敏感地猝灭Au-7(Dhla)(2)Cl-2纳米簇的荧光,使其成为Fe2 +的潜在荧光传感器,其检测限为3.8mm( 0.2 ppm)。 还提出了解离诱导的荧光猝灭机理以描述纳米簇至Fe2 +离子的荧光响应。

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