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A new 'turn-on' fluorescent chemosensor for Zn2+ based on a diarylethene derivative and its practical applications

机译:基于二芳基乙烯衍生物及其实际应用,新的“开启”荧光化学传感器及其实际应用

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摘要

A new photochromic fluorescent chemosensor 1o based on a diarylethene derivative was designed and successfully synthesized. In this work, 1o acted as a "turn-on" fluorescence sensor for detecting Zn2+ in methanol solution with the characteristics of fast response, good sensitivity and high selectivity over other metal ions. Compared with the initial fluorescence emission peak of 1o, upon the addition of Zn2+, a new strong fluorescence emission peak centered at 582 nm appeared with a significant intensity enhancement (105-fold), and the fluorescent color of the 1o solution changed from darkness to bright yellow. The results of Job's plot and HFtMS determined the binding stoichiometry of 1:1 between 1o and Zn2+. Besides, the limit of detection (LOD) of 1o towards Zn2+ was calculated at very low concentration up to 13.4 nM. Moreover, the fluorescence signals of 1o were used to design a logic gate. Furthermore, 1o could also detect trace amounts of Zn2+ in real water samples, suggesting the practical application in environmental systems.
机译:设计并成功地合成了基于二芳基乙烯衍生物的新的光致变色荧光化学体系1O。在这项工作中,1O充当了用于检测甲醇溶液中Zn2 +的“导通”荧光传感器,其特点是快速响应,良好的敏感性和其他金属离子的选择性。与初始荧光发射峰相比,在加入Zn2 +后,以582nm为中心的新的强荧光发射峰出现出显着的强度增强(105倍),并且10溶液的荧光颜色从黑暗变为亮黄的。作业曲线和HFTMS的结果确定10和Zn2 +之间的1:1的结合化学计量。此外,以非常低的浓度计算1o朝向Zn2 +的检测限(LOD),高达13.4nm。此外,使用1o的荧光信号来设计逻辑门。此外,还可以检测实际水样中的痕量Zn2 +,表明环境系统中的实际应用。

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