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在散射介质中荧光量子产率的测定。

Determination of Fluorescence Quantum Yields in Scattering Media.

机构信息

CONICET, Universidad de Buenos Aires, INQUIMAE, Facultad de Ciencias Exactas y Naturales, Buenos Aires, Argentina.

Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Dpto. de Química Inorgánica, Analítica y Química Física, Ciudad Universitaria. Pabellón II, 1er piso, C1428EHA, Buenos Aires, Argentina.

出版信息

Methods Appl Fluoresc. 2020 Sep 30;8(4). doi: 10.1088/2050-6120/aba69c.

Abstract

The fluorescence quantum yield is a measure of the efficiency of photon emission and quantifies the luminescent performance of a given sample. The determination of fluorescence quantum yields, particularly in scattering media, is relevant in the areas of materials science, technology and photonics. It is equally crucial when studying fluorescent bioanalytical probes and biological systems either for medical applications, physiological analyses or the interpretation of optical signals in nature. This type of determination represents a challenge since light scattering introduces an appreciable complexity in the measurements. Hence, the use of experimentally accurate methods and the understanding of their basis and principles is indispensable for obtaining reliable results. In addition, light re-absorption processes are usually very significant in these systems and the experimental quantum yields normally differ from the true quantum yields of the fluorophore. The first purpose of this work is to provide a clear and comprehensive compilation of the various optical methods that can be used for the determination of quantum yields in scattering media. A second purpose is to present the correction models to account for light re-absorption processes, applicable in each case. The advantages and disadvantages of each methodology are comparatively discussed, the difference between experimental and true quantum yield is clarified and it is explained which should be used depending on the case. Several examples previously published in literature are illustrated. The methods presented here are adequate for the study of very diverse samples such as suspensions, solid powders, films, animal tissues and even plant material.

摘要

荧光量子产率是衡量光子发射效率的一个指标,它量化了给定样品的发光性能。荧光量子产率的测定,特别是在散射介质中,在材料科学、技术和光子学领域具有重要意义。在研究荧光生物分析探针和生物系统时,无论是用于医学应用、生理分析还是对自然光学信号的解释,这一测定也同样至关重要。由于光散射会给测量带来相当大的复杂性,因此,这种测定具有一定的挑战性。因此,为了获得可靠的结果,使用实验上准确的方法并理解其基础和原理是必不可少的。此外,在这些系统中,光再吸收过程通常非常显著,实验量子产率通常与荧光团的真实量子产率不同。本工作的主要目的是对可用于散射介质中量子产率测定的各种光学方法进行清晰和全面的汇编。其次是介绍适用于每种情况的用于考虑光再吸收过程的校正模型。本文对每种方法的优缺点进行了比较性讨论,澄清了实验量子产率和真实量子产率之间的区别,并解释了在何种情况下应使用哪种量子产率。文中还举例说明了一些先前在文献中发表的实例。这里介绍的方法适用于研究非常不同的样品,如悬浮液、固体粉末、薄膜、动物组织甚至植物材料。

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