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荧光有机纳米材料的亮度。

Brightness of fluorescent organic nanomaterials.

机构信息

Laboratoire de Bioimagerie et Pathologies, UMR 7021 CNRS, Université de Strasbourg, 74 route du Rhin, 67401, Illkirch, France.

出版信息

Chem Soc Rev. 2023 Jul 17;52(14):4525-4548. doi: 10.1039/d2cs00464j.

Abstract

Brightness is a fundamental property of fluorescent nanomaterials reflecting their capacity to absorb and emit light. In sensing materials, brightness is crucial for high-sensitivity (bio)molecular detection, while in optical bioimaging it ensures high spatial and temporal resolution. Fluorescent organic nanoparticles (NPs) are particularly attractive because of their superior brightness compared to organic dyes. With the ever-growing diversity of organic nanomaterials, it is important to establish universal principles for measuring and estimating their brightness. This tutorial review provides definitions of brightness and describes the major approaches to its analysis based on ensemble and single-particle techniques. We present the current chemical approaches to fight Aggregation-Caused Quenching (ACQ) of fluorophores, which is a major challenge in the design of bright organic nanomaterials. The main classes of fluorescent organic NPs are described, including conjugated polymer NPs, aggregation-induced emission NPs, and NPs based on neutral and ionic dyes. Their brightness and other properties are systematically compared. Some brightest examples of bulk solid-state emissive organic materials are also mentioned. Finally, we analyse the importance of brightness and other particle properties in biological applications, such as bioimaging and biosensing. This tutorial will provide guidelines for chemists on the design of fluorescent organic NPs with improved performance and help them to estimate and compare the brightness of new nanomaterials with literature reports. Moreover, it will help biologists to select appropriate materials for sensing and imaging applications.

摘要

亮度是荧光纳米材料的基本性质,反映了它们吸收和发射光的能力。在传感材料中,亮度对于高灵敏度(生物)分子检测至关重要,而在光学生物成像中,它确保了高空间和时间分辨率。与有机染料相比,荧光有机纳米粒子(NPs)具有更高的亮度,因此特别有吸引力。随着有机纳米材料的多样性不断增加,建立测量和估计其亮度的通用原则非常重要。本教程综述提供了亮度的定义,并描述了基于整体和单粒子技术分析亮度的主要方法。我们介绍了目前用于对抗荧光团聚集诱导猝灭(ACQ)的化学方法,这是设计高亮度有机纳米材料的主要挑战。描述了主要的荧光有机纳米粒子类别,包括共轭聚合物 NPs、聚集诱导发射 NPs 以及基于中性和离子染料的 NPs。系统比较了它们的亮度和其他性质。还提到了一些最亮的体相固态发射有机材料的例子。最后,我们分析了亮度和其他颗粒性质在生物应用中的重要性,如生物成像和生物传感。本教程将为化学家提供设计具有改进性能的荧光有机 NPs 的指南,并帮助他们估计和比较新纳米材料与文献报告的亮度。此外,它将帮助生物学家为传感和成像应用选择合适的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/443f/10351213/9608ce05ba2b/d2cs00464j-f1.jpg

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