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A selective fluorescent probe based on bis-Schiff base for “turn-on” detection of Al3+ and cysteine by different mechanisms

机译:基于双席克碱的选择性荧光探针,用于通过不同机制的“开启”检测Al3 +和半胱氨酸的“开启”检测

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摘要

In the paper, a novel fluorescent sensor L based on phenolphthalein derivative bis-Schiff base was synthesized and characterized. Chemosensor L was found to be an excellent specific receptor for Al ~(3+) via significant fluorescent enhancement resulting from the inhibition of an internal charge transfer (ICT) process and an efficient chelation-enhanced fluorescence (CHEF) effect. A good linear relationship was obtained in the Al ~(3+) concentration from 0 to 50 μM with the detection limit reaching below 15 nM. Moreover, the addition of 2 equiv. of Cu ~(2+) can almost completely quench the emission intensity of L due to a ligand–metal charge transfer (LMCT) process. The resulting L –Cu( II ) complex showed a satisfactory sensing ability toward cysteine (Cys) through naked-eye and recovered fluorescence intensity with the detection limit of 0.36 nM. The fluorescence recovering process was caused by the stronger coordination ability of Cys with Cu ~(2+) than with L and therefore free L was released from the L –Cu( II ) complex. Furthermore, the sensor was used to detect Cys in practical samples with a high accuracy.
机译:本文合成和表征了基于酚酞衍生物BIS-SCHIFF碱的新型荧光传感器L.通过抑制内部电荷转移(ICT)方法和有效的螯合增强的荧光(厨师)效应,发现化学传感器L是Al〜(3+)的优异特异性受体,其通过显着的荧光增强和有效的螯合增强的荧光(厨师)效应。在Al〜(3+)浓度为0至50μm的浓度下获得良好的线性关系,检测限达到15nm以下。而且,添加了2当量。由于配体 - 金属电荷转移(LMCT)工艺,Cu〜(2+)几乎可以完全淬灭L的发射强度。所得L -Cu(II)复合物通过肉眼向半胱氨酸(CYS)呈现令人满意的感测能力,并回收荧光强度,检测限为0.36nm。荧光回收过程是由Cu〜(2+)的较强的配位能力引起的,而不是L而不是L,因此从L -Cu(II)络合物中释放出游离L.此外,传感器用于检测具有高精度的实际样品中的CYS。

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