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基于共轭寡聚吡咯的荧光和比色离子探针。

Fluorescent and colorimetric ion probes based on conjugated oligopyrroles.

机构信息

Key Laboratory for Advanced Materials and Institute of Fine Chemicals, East China University of Science and Technology, Shanghai, 200237, China.

出版信息

Chem Soc Rev. 2015 Mar 7;44(5):1101-12. doi: 10.1039/c4cs00436a.

Abstract

Metal ions and anions play important roles in many industrial and biochemical processes, and thus it is highly desired to detect them in the relevant systems. Small organic molecule based sensors for selective and sensitive detection of target ions show the advantages of low cost, high sensitivity and convenient implementation. In this area, pyrrole has incomparable advantages. It can be easily incorporated into linear and macrocyclic conjugated structures such as dipyrrins, porphyrins, and N-confused porphyrins, which may utilize the imino N and amino NH moieties for binding metal ions and anions, respectively. In this tutorial review, we focus on representative examples to describe the design, syntheses, sensing mechanisms, and applications of the conjugated oligopyrroles. These compounds could be used as colorimetric or fluorescent ion probes, with the advantages of vivid colour and fluorescence changes, easy structural modification and functionalization, and tunable emission wavelengths. Compared with normal porphyrins, simple di- and tripyrrins, as well as some porphyrinoids are more suitable for designing fluorescence "turn-on" metal probes, because they may exhibit flexible confirmations, and metal coordination will improve the rigidity, resulting in vivid fluorescence enhancement. It is noteworthy that the oligopyrrolic moieties may simultaneously act as the binding unit as well as the reporting moiety, which simplifies the design and syntheses of the probes.

摘要

金属离子和阴离子在许多工业和生化过程中起着重要作用,因此在相关体系中检测它们是非常需要的。基于小分子的传感器用于选择性和灵敏地检测目标离子具有成本低、灵敏度高和易于实现的优点。在这一领域,吡咯具有无与伦比的优势。它可以很容易地被整合到线性和大环共轭结构中,如二吡咯、卟啉和 N-稠合卟啉,这些结构可能分别利用亚氨基 N 和氨基 NH 部分来结合金属离子和阴离子。在本综述中,我们将重点介绍有代表性的例子,描述共轭寡聚吡咯的设计、合成、传感机制和应用。这些化合物可以用作比色或荧光离子探针,具有颜色和荧光变化明显、结构易于修饰和功能化、发射波长可调谐等优点。与正常卟啉相比,简单的二吡咯和三吡咯以及一些卟啉类似物更适合设计荧光“开启”金属探针,因为它们可能具有灵活的构象,而金属配位会提高其刚性,从而产生明显的荧光增强。值得注意的是,寡聚吡咯部分可以同时作为结合单元和报告基团,简化了探针的设计和合成。

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