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基于亚稳态 Sm(III)大环化学传感器的亚胺键转换:检测三聚氰胺氯的间接方法。

Imine bond transformation of a dynamic Sm(III) macrocycle-based chemosensor: The indirect approach for detecting cyanuric chloride.

机构信息

Department of Chemistry, Zhejiang Sci-Tech University, Xiasha Higher Education District, Hangzhou, 310018, PR China.

Department of Chemistry, Zhejiang Sci-Tech University, Xiasha Higher Education District, Hangzhou, 310018, PR China.

出版信息

Anal Chim Acta. 2021 Feb 1;1144:34-42. doi: 10.1016/j.aca.2020.11.031. Epub 2020 Dec 7.

DOI:10.1016/j.aca.2020.11.031
PMID:33453795
Abstract

Herein, we report our strategy to develop the efficient chemosensor and real-time monitoring technique for cyanuric chloride (TCT) detection. A luminescent macrocyclic mononuclear Sm(III) complex Sm-2 bearing with two dynamic imine bonds has been constructed via the template synthesis between dialdehyde HQ and matched diamine 1,2-bis(2-aminoethoxy)ethane. Sensing experiments reveal that complex Sm-2 exhibits the turn-off fluorescent and colorimetric response for TCT in CHOH. It is especially encouraging that this optical sensing process is not only rapid within 60 s but also high-efficient in the presence of TCT analogues as well as sensitive with the low limit of detection (LOD, 1.74 μM) and wide linear sensing range. Mechanism studies demonstrate that TCT sensing is mainly based on the imine bond transformation of probe Sm-2, which is due to the increased acidity induced by TCT. Meanwhile, a smartphone-based analytical method was developed to make complex Sm-2 accessible for the real-time TCT detection by RGB value outputs. It is believed that this work can shed some constructive lights on design of chemosensors and convenient detection technique for highly reactive analytes.

摘要

在此,我们报告了一种开发用于检测三聚氰胺氯(TCT)的高效化学传感器和实时监测技术的策略。通过间苯二甲醛 HQ 与匹配的二胺 1,2-双(2-氨乙氧基)乙烷之间的模板合成,构建了具有两个动态亚胺键的发光大环单核 Sm(III)配合物 Sm-2。传感实验表明,配合物 Sm-2 在 CHOH 中对 TCT 表现出关闭荧光和比色响应。特别令人鼓舞的是,这种光学传感过程不仅在 60 秒内快速,而且在 TCT 类似物存在下也高效,并且具有低检测限(LOD,1.74 μM)和宽线性传感范围。机理研究表明,TCT 传感主要基于探针 Sm-2 的亚胺键转化,这是由于 TCT 引起的酸度增加所致。同时,开发了一种基于智能手机的分析方法,通过 RGB 值输出使复杂 Sm-2 可用于实时 TCT 检测。相信这项工作可以为高反应性分析物的化学传感器设计和方便的检测技术提供一些建设性的思路。

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