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Deciphering the quenching mechanism of 2D MnO2 nanosheets towards Au nanocluster fluorescence to design effective glutathione biosensors

机译:揭示二维MnO2纳米片对Au纳米团簇荧光的猝灭机理,以设计有效的谷胱甘肽生物传感器

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Two-dimensional (2D) nanomaterials (such as 2D MnO2 nanosheets) have received increasing attention due to their unique photophysical properties, rich redox chemistry, excellent colloidal stability, good biocompatibility, etc. Recently, numerous sensing platforms have been reported by exploring the 2D MnO2 nanosheet mediated fluorescence quenching towards fluorophores and/or redox reactions between MnO2 and reductive targets. Though various fluorophores have been used in 2D MnO2 nanosheet based turn-on sensing systems, ultrasmall metal nanoclusters have not been exploited yet. Furthermore, the quenching mechanisms of MnO2 nanosheets towards various fluorophores have remained elusive. To address these issues, we studied the quenching of Au nanocluster fluorescence by 2D MnO2 nanosheets. First, we demonstrated that 2D MnO2 nanosheets were effective quenchers towards the fluorescence of metal nanoclusters (e.g., AuNC@BSA, the bovine serum albumin stabilized Au nanocluster). We further revealed that both dynamic and static quenching effects played critical roles in the quenching process while fluorescence resonance energy transfer (FRET) and inner filter effect (IFE) only played very minor roles in the quenching process. Finally, we developed a turn-on sensing strategy for detection of glutathione (GSH), an important antioxidant with good sensitivity and selectivity. This work provides useful insights in understanding the mechanisms of nanomaterial-induced fluorescence quenching. It also paves a way to design turn-on fluorescent sensors for important reductive targets.
机译:二维(2D)纳米材料(例如2D MnO2纳米片)因其独特的光物理特性,丰富的氧化还原化学,出色的胶体稳定性,良好的生物相容性等而受到越来越多的关注。最近,通过探索2D报道了许多传感平台。 MnO2纳米片介导了对荧光团的荧光猝灭和/或MnO2与还原性靶之间的氧化还原反应。尽管各种荧光团已用于基于2D MnO2纳米片的开启感应系统中,但尚未开发超小金属纳米团簇。此外,MnO2纳米片对各种荧光团的猝灭机理仍然难以捉摸。为了解决这些问题,我们研究了二维MnO2纳米片对Au纳米团簇荧光的猝灭。首先,我们证明了二维MnO2纳米片是对金属纳米簇(例如AuNC @ BSA,牛血清白蛋白稳定的Au纳米簇)的荧光的有效猝灭剂。我们进一步揭示,动态和静态猝灭作用均在猝灭过程中起关键作用,而荧光共振能量转移(FRET)和内部滤光作用(IFE)在猝灭过程中仅起很小的作用。最后,我们开发了一种检测谷胱甘肽(GSH)的开启感应策略,谷胱甘肽(GSH)是一种具有良好灵敏度和选择性的重要抗氧化剂。这项工作为理解纳米材料诱导的荧光猝灭的机理提供了有用的见识。它还为设计用于重要还原目标的开启荧光传感器铺平了道路。

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