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双通道离子印迹荧光聚合物用于同时进行铬形态分析的双重模式。

Dual channel ion imprinted fluorescent polymers for dual mode simultaneous chromium speciation analysis.

机构信息

School of Chemistry and Chemical Engineering, Linyi University, Linyi 276005, China.

出版信息

Analyst. 2020 Apr 7;145(7):2661-2668. doi: 10.1039/d0an00098a. Epub 2020 Feb 27.

Abstract

A simple core shell structured fluorescent sensor was constructed to realize simultaneous detection of hexavalent and trivalent chromium ions. Briefly, blue-carbon dots (b-CDs) were embedded into a silica sphere, then a Cr(iii) imprinted silica layer doped with red-CDs (r-CDs) was coated onto the b-CDs@SiO. Cr(vi) can selectively quench b-CDs based on the inner filter effect and Cr(iii) can selectively quench r-CDs based on electron transfer with the aid of the ion imprinting technique. In this strategy, it was not necessary to reduce Cr(vi) to Cr(iii) or oxidize Cr(iii) to Cr(vi), the chromium speciation of both can be detected simultaneously. When Cr(vi) was detected in the blue channel, the fluorescence intensity quenching effect was seen at 440 nm, and was linear from 0.01 to 10.0 μM, with a detection limit of 3.8 nM. For the detection of Cr(iii) in the red channel, the fluorescence intensity quenching effect was seen at 605 nm, and was linear from 0.1 to 15.0 μM, with a detection limit of 46 nM. This strategy enjoyed the advantages of simple construction, convenient detection, good selectivity and high sensitivity.

摘要

一种简单的核壳结构荧光传感器被构建用于实现六价铬和三价铬离子的同时检测。简要地说,将蓝色碳点(b-CDs)嵌入到二氧化硅球中,然后将掺杂有红色碳点(r-CDs)的铬(iii)印迹的硅层涂覆到 b-CDs@SiO 上。基于内滤效应,六价铬可以选择性地猝灭 b-CDs,而在离子印迹技术的辅助下,三价铬可以基于电子转移选择性地猝灭 r-CDs。在该策略中,不需要将六价铬还原为三价铬或将三价铬氧化为六价铬,就可以同时检测两种铬的形态。当在蓝色通道中检测六价铬时,在 440nm 处观察到荧光强度猝灭效应,从 0.01 到 10.0 μM 呈线性关系,检测限为 3.8 nM。对于红色通道中三价铬的检测,在 605nm 处观察到荧光强度猝灭效应,从 0.1 到 15.0 μM 呈线性关系,检测限为 46 nM。该策略具有结构简单、检测方便、选择性好和灵敏度高等优点。

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