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将pH探针转变为用于阴离子的“开启型”荧光受体。

Converting pH probes into "turn-on" fluorescent receptors for anions.

作者信息

Kataev Evgeny A

机构信息

Department of Chemistry and Pharmacy, University of Erlangen-Nürnberg, Nikolaus-Fiebiger-Str. 10, 91058 Erlangen, Germany.

出版信息

Chem Commun (Camb). 2023 Feb 9;59(13):1717-1727. doi: 10.1039/d2cc06194e.

Abstract

Recognition of anions by synthetic receptors is an integral part of supramolecular chemistry continuing to expand and find new application areas in our daily life. Many applications require visualization of anion recognition events, and the generated analytical signal is used to quantify anions in solution. Transferring a binding event to a measured signal is a challenging task. The design of a synthetic receptor must involve not only the perfectly positioned binding sites with complementary noncovalent interactions for a guest but should also realize the sensing mechanism that generates a strong analytical response upon guest binding. This feature article outlines the design concept for the construction of "turn-on" fluorescent receptors for anions involving fluorescent pH probes. Applications of this concept for the construction of synthetic fluorescent receptors for inorganic anions and nucleotides are described. Features of the obtained receptors and possible competing binding and sensing processes in solution are analyzed to understand the scope and limitations of the approach.

摘要

合成受体对阴离子的识别是超分子化学不可或缺的一部分,超分子化学在不断发展,并在我们的日常生活中找到新的应用领域。许多应用需要可视化阴离子识别事件,所产生的分析信号用于定量溶液中的阴离子。将结合事件转化为测量信号是一项具有挑战性的任务。合成受体的设计不仅必须涉及具有与客体互补非共价相互作用的完美定位的结合位点,还应实现一种传感机制,该机制在客体结合时产生强烈的分析响应。这篇专题文章概述了涉及荧光pH探针的阴离子“开启”荧光受体构建的设计概念。描述了该概念在构建用于无机阴离子和核苷酸的合成荧光受体方面的应用。分析了所获得受体的特征以及溶液中可能的竞争性结合和传感过程,以了解该方法的范围和局限性。

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