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Novel Amino-pillar5arene as a Fluorescent Probefor Highly Selective Detection of Au3+ Ions

机译:新型氨基柱5芳烃作为荧光探针用于高选择性检测Au3 +离子

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摘要

A novel fluorescent probe, amino-pillar[5]arene (APA), was prepared via a green, effective, and convenient synthetic method, which was characterized by nuclear magnetic resonance (NMR), infrared (IR), and high-resolution mass spectrometry. The fluorescence sensing behavior of the APA probe toward 22 metal ions in aqueous solutions were studied by fluorescence spectroscopy. The results showed that APA could be used as a selective fluorescent probe for the specificity detection of Au3+ ions. Moreover, the detection characteristics were investigated by fluorescence spectral titration, pH effect, fluorescence competitive experiments, Job’s plot analysis, 1H NMR, and IR. The results indicated that detection of Au3+ ions by the APA probe could be achieved in the range of pH 1–13.5 and that other coexisting metal ions did not cause any marked interference. The titration analysis results indicated that the fluorescence intensity decreased as the concentration of Au3+ ions increased, with an excellent correlation (R2 = 0.9942). The detection limit was as low as 7.59 × 10–8 mol·L–1, and the binding ratio of the APAprobe with Au3+ ions was 2:1. Therefore, the APA probehas potential applications for detecting Au3+ ions in theenvironment and in living organisms.
机译:通过绿色,有效,方便的合成方法制备了新型荧光探针氨基柱[5]芳烃(APA),其特征在于核磁共振(NMR),红外(IR)和高分辨率质量光谱法。通过荧光光谱研究了APA探针对水溶液中22种金属离子的荧光传感行为。结果表明,APA可作为Au 3 + 离子特异性检测的选择性荧光探针。此外,通过荧光光谱滴定,pH效应,荧光竞争实验,乔布斯图分析, 1 1 H NMR和IR来研究检测特性。结果表明,通过APA探针在pH值1–13.5范围内可以检测Au 3 + 离子,其他共存的金属离子也不会引起任何明显的干扰。滴定分析结果表明,荧光强度随着Au 3 + 离子浓度的增加而降低,且具有极好的相关性(R 2 = 0.9942)。检出限低至7.59×10 –8 mol·L –1 ,APA的结合率Au 3 + 离子的探针为2:1。因此,APA探针有可能用于检测金属中的Au 3 + 离子环境和生物体内。

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