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A Critical Review on Colorimetric and Fluorescent Probes for the Sensing of Analytes via Relay Recognition from the year 2012-17

机译:对通过2012 - 17年度继电器识别传感分析物传感的比色和荧光探针的关键综述

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摘要

Designing an effective sensor molecule for the selective detection of analyte with dual sensitivity is an innovative approach and is expected to offer huge biological and environmental benefits. Contrary to other sensing process, the reversible recognition of two different analytes while varying the binding sites and signaling subunits is entirely a new concept as the metal ion present in the ensemble can be easily displaced in the presence of ionic or neutral analytes. A reversible strategy can also be employed in the simultaneous recognition and identification of two different analytes with the aid of highly selective and sensitive chemosensors. This review gives an overview of the recent inventions (from 2012 to 2017) in the field of colorimetric and fluorescent receptors towards the detection of two analytes via a relay recognition process. A special emphasis is placed on different mechanisms associated with the sensing process assisted by fluorescence induced receptors which will help to design an effective sensor system for the selective detection of anions or amino acids or metal ions.
机译:设计有效的传感器分子以选择性检测具有双重灵敏度的分析物是一种创新的方法,预计将提供巨大的生物学和环境益处。与其他感应过程相反,在改变结合位点和信号亚基的同时,对两种不同分析物的可逆识别完全是一个新概念,因为在存在离子或中性分析物的情况下,合奏中存在的金属离子很容易移动。在高度选择性和敏感的化学传感器的帮助下,也可以采用可逆策略来同时识别和识别两种不同的分析物。这篇综述概述了比色受体和荧光受体领域的最新发明(从2012年到2017年)通过中继识别过程检测两个分析物。特别强调与荧光诱导受体辅助的感应过程相关的不同机制,这将有助于设计有效的传感器系统,以选择性检测阴离子或氨基酸或金属离子。

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