论文标题

荧光纳米颗粒

Fluorescent nanoparticles for sensing

论文作者

Chandra, Anil, Prasad, Saumya, Gigli, Giuseppe, del Mercato, Loretta L.

论文摘要

由于其出色的基于荧光的传感能力,因此基于纳米颗粒的荧光传感器已成为小分子传感器的竞争替代品。设计,建筑和光物理特性的可调节性吸引了许多研究组的注意,从而导致许多与应用于感知各种生物学分析物的新型纳米传感器有关的报告。尽管长期以来,半导体量子点一直是荧光纳米颗粒的最著名代表,但新型有机纳米颗粒的传感器(例如碳圆点和聚合物纳米颗粒)的普及越来越普及,这是由于它们的生物相容性,融合性的便利性以及构成功能化的能力。例如,对于半导体量子点传感器而言,荧光金和银纳米簇已成为细胞毒性替代品。本章概述了基于纳米颗粒的化学和生物传感传感器的最新发展,其中包括有关不同组合物的纳米颗粒的独特特性的讨论,以及它们的荧光,合成途径的基本机制及其优势和局限性。

Nanoparticle-based fluorescent sensors have emerged as a competitive alternative to small molecule sensors, due to their excellent fluorescence-based sensing capabilities. The tailorability of design, architecture, and photophysical properties has attracted the attention of many research groups, resulting in numerous reports related to novel nanosensors applied in sensing a vast variety of biological analytes. Although semiconducting quantum dots have been the best-known representative of fluorescent nanoparticles for a long time, the increasing popularity of new classes of organic nanoparticle-based sensors, such as carbon dots and polymeric nanoparticles, is due to their biocompatibility, ease of synthesis, and biofunctionalization capabilities. For instance, fluorescent gold and silver nanoclusters have emerged as a less cytotoxic replacement for semiconducting quantum dot sensors. This chapter provides an overview of recent developments in nanoparticle-based sensors for chemical and biological sensing and includes a discussion on unique properties of nanoparticles of different composition, along with their basic mechanism of fluorescence, route of synthesis, and their advantages and limitations.

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