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基于基于席夫碱配合物的金属转移反应的光学化学传感器。

Optical chemosensors based on transmetalation of salen-based Schiff base complexes.

作者信息

Cheng Jinghui, Ma Xiaofeng, Zhang Yuhui, Liu Jiaoyan, Zhou Xiangge, Xiang Haifeng

机构信息

College of Chemistry, Sichuan University , Chengdu 610041, China.

出版信息

Inorg Chem. 2014 Mar 17;53(6):3210-9. doi: 10.1021/ic5000815. Epub 2014 Feb 24.

Abstract

We report our systematic studies of novel, simple, selective, and sensitive optical (both colorimetric and fluorescent) chemosensors for detecting Al(3+) based on transmetalation reactions (metal displacement or exchange reactions) of a series of K(I), Ca(II), Zn(II), Cu(II), and Pt(II) complexes containing different ligands of salen-based Schiff bases. Both the chemical structure of the salen ligand and the identity of the central metal ion have a tremendous impact on the sensing performance, which is mainly determined by the stability constant of the complex. Moreover, the selectivities of the salen-complex-based chemosensors are much better than those of the corresponding free salen ligands because of the shielding function of the filled-in metal ion in the complex. Therefore, the present work potentially provides a new and simple way to design optical probes via complex-based transmetalation reactions.

摘要

我们报告了基于一系列含有不同水杨醛 Schiff 碱配体的 K(I)、Ca(II)、Zn(II)、Cu(II) 和 Pt(II) 配合物的金属转移反应(金属置换或交换反应),对用于检测 Al(3+) 的新型、简单、选择性和灵敏的光学(比色和荧光)化学传感器进行的系统研究。水杨醛配体的化学结构和中心金属离子的身份对传感性能都有巨大影响,传感性能主要由配合物的稳定常数决定。此外,由于配合物中填充的金属离子的屏蔽作用,基于水杨醛配合物的化学传感器的选择性比相应的游离水杨醛配体要好得多。因此,本工作可能为通过基于配合物的金属转移反应设计光学探针提供一种新的简单方法。

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