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Ratiometric fluorescence method for malachite green detection based on dual-emission BSA-protected gold nanoclusters

机译:基于双发射牛血清白蛋白保护的金纳米团簇的孔雀绿绿色比例荧光检测方法

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摘要

The ratiometric fluorescence measurement has drawn great attention due to its selective and sensitive sensing property for numerous analytes. In this sensing system, a ratiometric fluorescence method is described for the determination of malachite green (MG) based on bovine serum albumin-stabilized Au nanoclusters (BSA-AuNCs) with dual emission. The as-prepared BSA-AuNCs exhibit two emission peaks around 430 and 610 nm under a single excitation, which may be from the intrinsic structure of BSA and AuNCs, respectively. As MG was added, the fluorescence at 610 nm was obviously quenched, and the fluorescence intensity at 430 nm decreased slowly, which might be mainly ascribed to fluorescence resonance energy transfer and dynamic quenching. The fluorescence intensity ratio ofF430/F610shows good linearity for detecting MG in the 0.3–20 μM range with a low detection limit of 0.19 μM. In addition, the ratiometric sensing strategy is successfully applied to real water samples, which reveals its potential practicability for detecting MG in environmental water samples.
机译:比例荧光测量由于对多种分析物具有选择性和灵敏的传感特性而备受关注。在此传感系统中,描述了一种基于荧光定量比色法的方法,该方法基于牛血清白蛋白稳定化的金纳米簇(BSA-AuNCs),具有双重发射,用于测定孔雀石绿(MG)。如此制备的BSA-AuNCs在一次激发下在430和610nm处出现两个发射峰,这可能分别来自BSA和AuNCs的固有结构。加入MG后,610 nm处的荧光明显被猝灭,而430 nm处的荧光强度缓慢下降,这可能归因于荧光共振能量转移和动态猝灭。 F430 / F610的荧光强度比在0.3–20μm范围内检测MG表现出良好的线性,检测限低至0.19μm。此外,比率感测策略已成功应用于实际水样中,显示了其检测环境水样中MG的潜在实用性。

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