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基于荧光素的荧光传感器用于各种分析物的选择性传感。

Fluorescein Based Fluorescence Sensors for the Selective Sensing of Various Analytes.

机构信息

Department of Chemistry, CHRIST (Deemed To Be University), Hosur Road, Bengaluru, 560029, India.

出版信息

J Fluoresc. 2021 Sep;31(5):1251-1276. doi: 10.1007/s10895-021-02770-9. Epub 2021 Jul 13.

Abstract

Fluorescein molecules are extensively used to develop fluorescent probes for various analytes due to their excellent photophysical properties and the spirocyclic structure. The main structural modification of fluorescein occurs at the carboxyl group where different groups can be easily introduced to produce the spirolactam structure which is non-fluorescent. The spirolactam ring opening accounts for the fluorescence and the dual sensing of analytes using fluorescent sensors is still a topic of high interest. There is an increase in the number of dual sensors developed in the past five years and quite a good number of fluorescein derivatives were also reported based on reversible mechanisms. This review analyses environmentally and biologically important cations such as Cu, Hg, Fe, Pd, Zn, Cd, and Mg; anions (F, OCl) and small molecules (thiols, CO and HS). Structural modifications, binding mechanisms, different strategies and a comparative study for selected cations, anions and molecules are outlined in the article.

摘要

荧光素分子由于其优异的光物理性质和螺环结构,被广泛用于开发各种分析物的荧光探针。荧光素的主要结构修饰发生在羧基上,在那里可以很容易地引入不同的基团,以产生非荧光的螺环内酰胺结构。螺环内酰胺环的开启导致荧光,使用荧光传感器对分析物进行双重传感仍然是一个热门话题。在过去五年中,开发的双重传感器的数量有所增加,并且还基于可逆机制报道了相当数量的荧光素衍生物。这篇综述分析了环境和生物上重要的阳离子,如 Cu、Hg、Fe、Pd、Zn、Cd 和 Mg;阴离子(F、OCl)和小分子(硫醇、CO 和 HS)。文章中概述了结构修饰、结合机制、不同策略以及对选定阳离子、阴离子和分子的比较研究。

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