School of Molecular Sciences and The Biodesign Institute, Arizona State University, Tempe, AZ, United States of America.
Methods Appl Fluoresc. 2020 Apr 22;8(3):033001. doi: 10.1088/2050-6120/ab7e10.
The measurement of fluorescence spectra and the determination of fluorescence quantum yields in transparent samples are conceptually simple tasks, but these procedures are subject to several pitfalls that can lead to significant errors. Available technical reports and protocols often assume that the reader possesses a solid theoretical background in spectroscopy and has ample experience with fluorescence instrumentation, but this is often not the case given the many applications of fluorescence in diverse fields of science. The goal of this tutorial is to provide a didactic treatment of the topic that will hopefully be accessible to readers without extensive expertise in the field of fluorescence. The article covers the theoretical background needed to understand the origins of the most common artifacts researchers can expect. Possible artifacts are illustrated with examples to help readers avoid them or identify them if present. A step-by-step example of a fluorescence quantum yield determination in solution is provided with detailed experimental information to help readers understand how to design and analyze experiments.
荧光光谱的测量和透明样品中荧光量子产率的测定从概念上讲是简单的任务,但这些过程存在一些可能导致重大错误的陷阱。现有的技术报告和方案通常假设读者具有坚实的光谱学理论背景,并且对荧光仪器有丰富的经验,但鉴于荧光在科学的许多领域的广泛应用,这在很多情况下是不成立的。本教程的目的是提供一个关于该主题的教学处理,希望没有荧光领域广泛专业知识的读者也能够理解。本文涵盖了理解研究人员可能预期的最常见伪影的起源所需的理论背景。通过示例说明了可能的伪影,以帮助读者避免或识别它们是否存在。提供了一个在溶液中测定荧光量子产率的实例,其中包含详细的实验信息,以帮助读者了解如何设计和分析实验。