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Fluorescent ZnII Chemosensor Mediated by a 18‐Naphthyridine Derivative and It′s Photophysical Properties

机译:18-萘啶衍生物介导的荧光ZnII化学传感器及其光物理性质

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摘要

One of the greatest challenges in using fluorescent chemosensors for highly selective and sensitive transition‐metal ions is finding an efficient and simple method for its synthesis. In this study, a highly efficient fluorescence chemosensor for ZnII was developed from N‐Boc‐L‐proline modified 1,8‐naphthyridine. The fluorescence intensity of the chemosensor was increased significantly only in the presence of ZnII ion which provided a perceived color change for rapid visual sensing, while other metal ions showed fluorescence quenching or little changes. It was worth noting that the chemosensor >L distinguished ZnII from CdII commonly having similar properties. The solvent effect and possible bonding mode for fluorescence enhancement have been also discussed. Results of this study indicated that the Boc‐group in l‐proline significantly improved the sensitivity and selectivity for ZnII detection performance, as confirmed by comparison experiments and time dependent‐density functional theory (TD‐DFT) calculations.
机译:将荧光化学传感器用于高度选择性和敏感的过渡金属离子时,最大的挑战之一是找到一种有效且简单的合成方法。在这项研究中,从N-Boc-L-脯氨酸修饰的1,8-萘啶开发了一种用于Zn II 的高效荧光化学传感器。仅在存在Zn II 离子的情况下,化学传感器的荧光强度才会显着增加,而Zn II 离子可提供可感知的颜色变化,从而实现快速的视觉感应,而其他金属离子则显示出荧光猝灭或几乎没有变化。值得注意的是,化学传感器> L 可以将Zn II 与Cd II 区别开来。还讨论了溶剂效应和可能的荧光增强键合模式。这项研究的结果表明,脯氨酸的Boc-基团显着提高了Zn II 检测性能的灵敏度和选择性,这已通过比较实验和时间依赖性密度泛函理论(TD-DFT)的证实。计算。

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