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A novel pyrene based highly selective reversible fluorescent-colorimetric sensor for the rapid detection of Cu2+ ions: application in bio-imaging

机译:一种新型芘的高精度可逆荧光色度传感器,用于快速检测Cu2 +离子:在生物成像中的应用

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摘要

A novel pyrene derivative containing a benzilmonohydrazone moiety has been prepared following a facile synthetic procedure and exploited for the selective detection of Cu2+ under four different channels (colorimetric, absorption, emission and bio-imaging). In the presence of Cu2+, the chemosensor L provided a significant fluorescence enhancement with an easily detectable colour change from yellow to colourless, whereas other metal ions produced only minor changes in colour or fluorescence intensity. The sensitivity of the fluorescence based assay is 7.8 nM for Cu2+, which is far below the limit mentioned in the World Health Organization (WHO) guidelines for drinking water. H-1 NMR data, the Job plot and the ESI-MS spectrum prove 1:1 stoichiometric complexation between L and Cu2+. The sensing behaviour of the probe has also been well supported by DFT studies. Receptor L exhibits remarkable detection ability in a wide pH range of 4-11 and is successfully utilised in the determination of Cu2+ in real samples. Moreover, L shows its application potential in the detection of Cu2+ in living cells.
机译:在容易合成程序之后制备含有苯甲酰腙部分的新型芘衍生物,并利用在四种不同通道下选择性检测Cu2 +(比色,吸收,发射和生物成像)。在Cu2 +的存在下,化学传感器L具有显着的荧光增强,易于可检测的颜色从黄色变为无色,而其他金属离子仅产生的颜色或荧光强度的微小变化。 Cu2 +的荧光的测定的敏感性为7.8nm,远远低于世界卫生组织(世卫组织)饮用水指南中提到的限制。 H-1 NMR数据,作业曲线和ESI-MS光谱证明了L和Cu2 +之间的1:1化学计量络合。 DFT研究也得到了很好的支持探针的感测行为。受体L在4-11的宽pH范围内表现出显着的检测能力,并且在真实样品中的Cu2 +中成功使用。此外,L显示其在活细胞中检测Cu2 +的应用潜力。

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