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评估一种商用积分球装置,用于测定稀染料溶液的绝对荧光量子产率。

Evaluation of a commercial integrating sphere setup for the determination of absolute photoluminescence quantum yields of dilute dye solutions.

机构信息

BAM Federal Institute for Materials Research and Testing, Richard-Willstaetter-Str. 11, 12489 Berlin, Germany.

出版信息

Appl Spectrosc. 2010 Jul;64(7):733-41. doi: 10.1366/000370210791666390.

Abstract

The commercial availability of stand-alone setups for the determination of absolute photoluminescence quantum yields (Phi(f)) in conjunction with the increasing use of integrating sphere accessories for spectrofluorometers is expected to have a considerable influence not only on the characterization of chromophore systems for use in optical and opto-electronic devices, but also on the determination of this key parameter for (bio)analytically relevant dyes and functional luminophores. Despite the huge potential of systems measuring absolute Phi(f) values and the renewed interest in dependable data, evaluated protocols for even the most elementary case, the determination of the fluorescence quantum yield of transparent dilute solutions of small organic dyes with integrating sphere methods, are still missing. This encouraged us to evaluate the performance and sources of uncertainty of a simple commercial integrating sphere setup with dilute solutions of two of the best characterized fluorescence quantum yield standards, quinine sulfate dihydrate and rhodamine 101, strongly differing in spectral overlap between absorption and emission. Special attention is dedicated to illustrate common pitfalls of this approach, thereby deriving simple procedures to minimize measurement uncertainties and improve the comparability of data for the broad community of users of fluorescence techniques.

摘要

商品化的独立式绝对荧光量子产率(Phi(f))测定系统与越来越多地应用于荧光分光光度计的积分球附件的结合,预计将不仅对用于光学和光电设备的发色团系统的特性描述产生重大影响,而且对(生物)分析相关染料和功能发光体这一关键参数的测定也会产生重大影响。尽管具有测量绝对 Phi(f)值潜力的系统和对可靠数据的重新关注,但即使是最简单的情况(用积分球法测定透明稀溶液中小有机染料的荧光量子产率),也仍然缺乏经过评估的协议。这促使我们评估一种简单的商业积分球装置的性能和不确定度来源,该装置采用两种光谱重叠在吸收和发射之间差异很大的最好被表征的荧光量子产率标准物质,硫酸奎宁二水合物和若丹明 101 的稀溶液进行测试。特别关注阐明这种方法的常见陷阱,从而推导出一些简单的程序来最小化测量不确定度,并提高荧光技术广大用户数据的可比性。

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