Exploration of fluorescence properties of gold nanoclusters at the single-molecule levels

T. Lin, J. L. Shen, C. A. Lin, W. H. Chang, C. Yuan
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Abstract

Single-molecule spectroscopy (SMS) is a powerful and versatile technique that can be utilized to unravel the bio-molecule dynamics and to sense specific bio-molecules with extremely high sensitivity. A key requirement for successfully performing SMS is to incorporate suitable reporters/sensors. When the target molecules interact with them, the signals (such as fluorescence intensity/lifetime) can be changed accordingly. These reporters should be small enough, bio-compatible, non-toxic, and optically stable. Newly emerged fluorescent gold nanoclusters (Au NCs) have been demonstrated to be promising reporters in terms of aforementioned factors. In this work, we will explore their fluorescence properties from the single-molecule viewpoints by using novel fluorescence lifetime correlation spectroscopy. By which, the triplet state dynamics and diffusion process can be observed and the relevant time constant was derived. This work paves a way to use their single-particle fluorescence properties, such as fluorescence lifetime or triplet state dynamics for high-sensitivity bio-sensing in the future.
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单分子水平上金纳米团簇荧光性质的探索
单分子光谱(SMS)是一种强大而通用的技术,可用于揭示生物分子动力学并以极高的灵敏度检测特定的生物分子。成功执行SMS的一个关键要求是结合合适的报告器/传感器。当目标分子与它们相互作用时,信号(如荧光强度/寿命)可以相应改变。这些报告者应该足够小,生物相容,无毒,光学稳定。根据上述因素,新出现的荧光金纳米团簇(Au NCs)已被证明是有前途的记者。在这项工作中,我们将利用新的荧光寿命相关光谱从单分子角度探索它们的荧光特性。由此可以观察到三重态动力学和扩散过程,并推导出相应的时间常数。这项工作为将来利用它们的单粒子荧光特性(如荧光寿命或三重态动力学)进行高灵敏度生物传感铺平了道路。
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