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Synthesis and photophysical properties of water-soluble sulfonato-Salen-type Schiff bases and their applications of fluorescence sensors for Cu~(2+) in water and living cells

机译:水溶性磺化Salen型席夫碱的合成,光物理性质及其在水和活细胞中Cu〜(2+)荧光传感器的应用

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摘要

A series of water-soluble sulfonato-Salen-type ligands derived from different diamines including 1,2-ethylenediamine (Et-1-Et-4), 1,2-cyclohexanediamine (Cy-1 and Cy-2), 1,2-phenylenediamine (Ph-1-Ph-3 and PhMe-1-PhMe-4), and dicyano-1,2-ethenediamine (CN-1) has been designed and prepared. Sulfonate groups of ligands ensure good stability and solubility in water without affecting their excited state properties. These ligands exhibit strong UV/Vis-absorption and blue, green, or orange fluorescence. Time-dependent-density functional theory calculations have been undertaken to reveal the influence of ligand nature, especially sulfonate groups, on the frontier molecular orbitals. Since their fluorescence is selectively quenched by Cu~(2+), the sulfonato-Salen-type ligands can be used as highly selective and sensitive turn-off fluorescence sensors for the detection of Cu~(2+) in water and fluorescence imaging in living cells.
机译:衍生自不同二胺的一系列水溶性磺基-萨伦型配体,包括1,2-乙二胺(Et-1-Et-4),1,2-环己二胺(Cy-1和Cy-2),1,2设计并制备了-苯二胺(Ph-1-Ph-3和PhMe-1-PhMe-4)和二氰基1,2-乙二胺(CN-1)。配体的磺酸盐基团可确保在水中的良好稳定性和溶解性,而不会影响其激发态性能。这些配体表现出强烈的UV / Vis吸收和蓝色,绿色或橙色荧光。已经进行了时变密度泛函理论计算,以揭示配体性质,尤其是磺酸盐基团,对前沿分子轨道的影响。由于它们的荧光被Cu〜(2+)选择性淬灭,因此磺基-萨伦型配体可以用作高选择性和灵敏的关断荧光传感器,用于检测水中的Cu〜(2+)和荧光成像。活细胞。

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