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A solvent-dependent chemosensor for fluorimetric detection of Hg2+ and colorimetric detection of Cu2+ based on a new diarylethene with a rhodamine B unit

机译:一种溶剂依赖性化学传感器,用于荧光检测HG2 +和Cu2 +的比色性检测,基于罗丹明B单位的新型二芳基乙烯

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摘要

A novel solvent-dependent chemosensor 1o based on a diarylethene containing a rhodamine B unit has been designed. It could be used as a dual-functional chemosensor for selective detection of Hg2+ and Cu2+ by monitoring the changes in the fluorescence and UV-vis spectral in different solvents. A striking fluorescence enhancement at 617 nm was observed in DMSO upon the addition of Hg2+. However, 1o showed a remarkable absorption band appeared with maximum absorption at 555 nm after the addition of Cu2+ in THF. The results of ESI-MS spectra and Job's plot confirmed a 1:1 binding stoichiometry between 1o and the two ions. The limits of detection of Hg2+ and Cu2+ were determined to be 0.14 mu M and 0.51 mu M, respectively. A 1:2 demultiplexer circuit was constructed by using UV light as data input, Cu2+ as the address input, and the absorbance at 555 nm and the absorbance ratio of (A(603)/A(274)) as the dual data outputs.
机译:设计了一种基于含罗丹明B单元的二芳基甲基乙烯的新型溶剂依赖性化学传感器1O。 它可以用作双官能化学传感器,用于通过监测不同溶剂中的荧光和紫外 - Vis光谱的变化来选择性检测Hg2 +和Cu2 +。 在添加HG2 +后,在DMSO中观察到617nm处的醒目荧光增强。 然而,在THF中加入CU 2 +后,1o显示出显着的吸收带,在555nm下出现最大吸收。 ESI-MS光谱和作业曲线的结果证实了1:1之间的1:1与两离子之间的结合化学计量。 将HG2 +和Cu2 +的检测限定为0.14μm和0.51μm。 通过使用UV光作为数据输入,Cu2 +作为地址输入来构建1:2多路分解器电路,以及555nm处的吸光度和(a(603)/ a(274)的吸光度比为双数据输出。

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    《RSC Advances》 |2019年第72期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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