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Real-time selective visual monitoring of Hg2+ detection at ppt level: An approach to lighting electrospun nanofibers using gold nanoclusters

机译:在ppt级别对Hg2 +检测进行实时选择性视觉监控:一种使用金纳米团簇点亮电纺纳米纤维的方法

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摘要

In this work, fluorescent gold nanocluster (AuNC) decorated polycaprolactone (PCL) nanofibers (AuNC*PCL-NF) for real time visual monitoring of Hg2+ detection at ppt level in water is demonstrated. The resultant AuNC*PCL-NF exhibiting remarkable stability more than four months at ambient environment and facilitates increased accessibility to active sites resulting in improved sensing performance with rapid response time. The fluorescence changes of AuNC*PCL-NF and their corresponding time dependent spectra, upon introduction of Hg2+, led to the visual identification of the sensor performance. It is observed that the effective removal of excess ligand (bovine serum albumin (BSA) greatly enhances the surface exposure of AuNC and therefore their selective sensing performance is achieved over competent metal ions such as Cu2+, Ni2+, Mn2+, Zn2+, Cd2+, and Pb2+ present in the water. An exceptional interaction is observed between AuNC and Hg2+, wherein the absence of excess interrupting ligand makes AuNC more selective towards Hg2+. The underlying mechanism is found to be due to the formation of Au-Hg amalgam, which was further investigated with XPS, TEM and elemental mapping studies. In short, our findings may lead to develop very efficient fluorescent-based nanofibrous mercury sensor, keeping in view of its stability, simplicity, reproducibility, and low cost.
机译:在这项工作中,展示了荧光金纳米簇(AuNC)装饰的聚己内酯(PCL)纳米纤维(AuNC * PCL-NF),用于实时可视监控ppt水中Hg 2 + 的检测。所得的AuNC * PCL-NF在周围环境下可显示超过四个月的显着稳定性,并有助于增加对活性位点的可及性,从而以快速的响应时间改善了传感性能。引入Hg 2 + 后,AuNC * PCL-NF的荧光变化及其相应的时变光谱导致了传感器性能的目视识别。观察到有效去除多余的配体(牛血清白蛋白(BSA)大大增强了AuNC的表面暴露,因此,它们对感受态金属离子(如Cu 2 + ,Ni 2 + ,Mn 2 + ,Zn 2 + ,Cd 2 + 和Pb 2+ 存在于水中。在AuNC和Hg 2 + 之间观察到异常相互作用,其中不存在过量的中断配体使得AuNC对Hg 2 + 更具选择性。发现其潜在机理是由于形成了Au-Hg汞合金,并通过XPS,TEM和元素图谱研究对其进行了进一步研究,总之,我们的发现可能会导致开发非常有效的基于荧光的纳米纤维汞传感器,从而保持考虑到其稳定性,简单性,可重复性和低成本。

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