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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Two selective fluorescent chemosensors for cadmium ions in 99% aqueous solution: The end group effect on the selectivity, DFT calculations and biological applications
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Two selective fluorescent chemosensors for cadmium ions in 99% aqueous solution: The end group effect on the selectivity, DFT calculations and biological applications

机译:两种用于99%水溶液中镉离子的选择性荧光化学传感器:端基对选择性,DFT计算和生物学应用的影响

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Two fluorescent chemosensors for cadmium ions, 2-(2-formylquinolin-8-yloxy) -N,N-diisopropylacetamide (FQDIPA) and 2-(2-formylquinolin-8-yloxy)-N,N- diphenylacetamide (FQDPA), were first assessed in 99% aqueous solutions. The sensor FQDIPA with an end group of an aliphatic amine can recognize Cd ~(2+) from other metal ions more selectively and sensitively than FQDPA with that of aromatic amines, which was further demonstrated by DFT calculations that were comparable to the experimental results. It is indeed the distinction between the end groups of these chemosensors that results in the variation of the energy difference between the LUMOs and HOMOs and the interaction energies of FQDIPA·Cd ~(2+) and FQDPA·Cd ~(2+). Furthermore, the living cell image experiment could also indicate that the FQDIPA is more suitable than the FQDPA in the practical applications in biological systems.
机译:两个用于镉离子的荧光化学传感器分别是2-(2-甲酰基喹啉-8-基氧基)-N,N-二异丙基乙酰胺(FQDIPA)和2-(2-甲酰基喹啉-8-基氧基)-N,N-二苯基乙酰胺(FQDPA)首先在99%的水溶液中进行评估。具有芳族胺端基的传感器FQDIPA可以比具有芳族胺的FQDPA更选择性和灵敏地识别其他金属离子中的Cd〜(2+),这已通过与实验结果相当的DFT计算得到了进一步证明。实际上,这些化学传感器的端基之间的区别导致LUMO和HOMO之间的能量差以及FQDIPA·Cd〜(2+)和FQDPA·Cd〜(2+)的相互作用能发生变化。此外,活细胞图像实验还可以表明FQDIPA在生物系统的实际应用中比FQDPA更合适。

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