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还原texaphyrin:一种用于水溶液中重金属的比率光学传感器。

Reduced texaphyrin: A ratiometric optical sensor for heavy metals in aqueous solution.

作者信息

Root Harrison D, Thiabaud Gregory, Sessler Jonathan L

机构信息

Department of Chemistry, The University of Texas at Austin, Austin, TX 78712-1224, USA.

出版信息

Front Chem Sci Eng. 2020 Feb;14(1):19-27. doi: 10.1007/s11705-019-1888-y. Epub 2020 Jan 8.

Abstract

We report here a water-soluble metal cation sensor system based on the as-prepared or reduced form of an expanded porphyrin, texaphyrin. Upon metal complexation, a change in the redox state of the ligand occurs that is accompanied by a color change from red to green. Although long employed for synthesis in organic media, we have now found that this complexation-driven redox behavior may be used to achieve the naked eye detectable colorimetric sensing of several number of less-common metal ions in aqueous media. Exposure to In(III), Hg(II), Cd(II), Mn(II), Bi(III), Co(II), and Pb(II) cations leads to a colorimetric response within 10 min. This process is selective for Hg(II) under conditions of competitive analysis. Furthermore, among the subset of response-producing cations, In(III) proved unique in giving rise to a ratiometric change in the ligand-based fluorescence features, including an overall increase in intensity. The cation selectivity observed in aqueous media stands in contrast to what is seen in organic solvents, where a wide range of texaphyrin metal complexes may be prepared. The formation of metal cation complexes under the present aqueous conditions was confirmed by reversed phase high-performance liquid chromatography, ultra-violet-visible absorption and fluorescence spectroscopies, and high-resolution mass spectrometry.

摘要

我们在此报告一种基于扩展卟啉(texaphyrin)的制备态或还原态的水溶性金属阳离子传感系统。金属络合时,配体的氧化还原状态发生变化,同时伴随着颜色从红色变为绿色。尽管长期以来一直用于有机介质中的合成,但我们现在发现,这种络合驱动的氧化还原行为可用于实现对水介质中多种不太常见金属离子的肉眼可检测比色传感。暴露于铟(In(III))、汞(Hg(II))、镉(Cd(II))、锰(Mn(II))、铋(Bi(III))、钴(Co(II))和铅(Pb(II))阳离子会在10分钟内产生比色响应。在竞争分析条件下,该过程对汞(Hg(II))具有选择性。此外,在产生响应的阳离子子集中,铟(In(III))在基于配体的荧光特征方面产生比率变化方面表现独特,包括强度总体增加。在水介质中观察到的阳离子选择性与在有机溶剂中所见形成对比,在有机溶剂中可以制备多种texaphyrin金属络合物。通过反相高效液相色谱、紫外可见吸收光谱和荧光光谱以及高分辨率质谱证实了在当前水条件下金属阳离子络合物的形成。

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