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基于纳米粒子的传感器中使用固定波长同步荧光光谱法:简要综述。

Using constant-wavelength synchronous fluorescence spectroscopy in nanoparticle-based sensors: a minireview.

机构信息

Pharmaceutical Analysis Research Center, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Anal Methods. 2021 Feb 28;13(8):968-973. doi: 10.1039/d0ay02096f. Epub 2021 Feb 17.

Abstract

This study focuses on optical nanosensors based on constant-wavelength synchronous fluorescence spectroscopy (SFS) and reviews their applications for analysis purposes in the last few decades. In comparison to conventional fluorescence, SFS shows a higher selectivity owing to the narrowing of spectral bands and the simplification of spectra. The reported SFS-based nanosensors are classified based on their mechanism for analyte detection into two types including quenching based methods and enhancement based methods. Herein, almost all studies performed in this field are reviewed and the details of each study are carefully explained. Moreover, the analytical properties of the reported nanosensors are tabulated in relevant tables. It is hoped that this study will stimulate further investigations in this field with similar nanosensors.

摘要

本研究侧重于基于固定波长同步荧光光谱(SFS)的光学纳米传感器,并回顾了它们在过去几十年中的分析应用。与传统荧光相比,SFS 由于光谱带宽变窄和光谱简化,显示出更高的选择性。所报道的基于 SFS 的纳米传感器根据其分析物检测机制分为两种类型,包括基于猝灭的方法和基于增强的方法。本文综述了该领域几乎所有的研究,并详细解释了每项研究的细节。此外,还将所报道的纳米传感器的分析性能列于相关表格中。希望本研究将激发具有类似纳米传感器的该领域的进一步研究。

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