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基于 TQEN(,,','-四(2-喹啉基甲基)乙二胺)平台的喹啉和异喹啉衍生配体设计,用于荧光感应特定金属离子和磷酸盐物种。

Quinoline- and isoquinoline-derived ligand design on TQEN (,,','-tetrakis(2-quinolylmethyl)ethylenediamine) platform for fluorescent sensing of specific metal ions and phosphate species.

机构信息

Department of Chemistry, Biology, and Environmental Science, Faculty of Science, Nara Women's University, Nara 630-8506, Japan.

出版信息

Dalton Trans. 2020 Dec 22;49(48):17494-17504. doi: 10.1039/d0dt03024d.

Abstract

Rational molecular structure alterations of TQEN (N,N,N',N'-tetrakis(2-quinolylmethyl)ethylenediamine) produced variable fluorescent sensors for specific metal ions and phosphate species. Utilization of methoxy-substituted quinoline and isoquinoline chromophores, conformational restriction and multidentate coordination structure allow discrimination between Zn2+ and Cd2+. Pyrophosphate (P2O74-, PPi) and phosphate (PO43-) also are selectively detected with dinuclear Zn2+ complexes of tetrakisquinoline-based ligands. Differential stability and structure of the metal complexes, as well as resulting fluorescence enhancement mechanism, such as intramolecular excimer formation via change in coordination geometry, play key roles in the discrimination of target ions.

摘要

通过对 TQEN(N,N,N',N'-四(2-喹啉基甲基)乙二胺)进行合理的分子结构修饰,制备了用于特定金属离子和磷酸盐物种的可变荧光传感器。利用甲氧基取代的喹啉和异喹啉发色团、构象限制和多齿配位结构,可以区分 Zn2+和 Cd2+。双核 Zn2+配合物的四喹啉基配体也可以选择性地检测焦磷酸盐(P2O74-,PPi)和磷酸盐(PO43-)。金属配合物的不同稳定性和结构,以及由此产生的荧光增强机制,如通过配位几何变化形成分子内激基复合物,在目标离子的区分中起着关键作用。

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