Tomasini Eugenia P, San Román Enrique, Braslavsky Silvia E
INQUIMAE/DQIAyQF, Facultad de Ciencias Exactas y Naturales, UBA, Ciudad Universitaria, Pab. II, C1428EHA Buenos Aires, Argentina.
Langmuir. 2009 May 19;25(10):5861-8. doi: 10.1021/la803492k.
Determination of quantum yields for various processes (such as fluorescence and triplet formation) in dye-loaded light-scattering powdered samples is an open issue. Here, we report the testing of laser-induced optoacoustic spectroscopy (LIOAS) for the determination of fluorescence quantum yields of Rhodamine 101 and Rhodamine 6G adsorbed at various loadings on microgranular cellulose powder. The results of the LIOAS experiments are consistent with those from the method developed in one of our laboratories based on the measurement of apparent reflectance using an integrating sphere [Mirenda, M.; Lagorio, M. G.; San Roman, E. Langmuir 2004, 20, 3690-3697], which allows the simultaneous calculation of fluorescence quantum yield and reflectance devoid of fluorescence artifacts. Criteria to quantify overall errors and detect outlying values are developed. The theory underlying the application of LIOAS to light-scattering samples and experimental details are presented.
测定负载染料的光散射粉末样品中各种过程(如荧光和三线态形成)的量子产率是一个尚未解决的问题。在此,我们报告了激光诱导光声光谱法(LIOAS)用于测定吸附在微颗粒纤维素粉末上不同负载量的罗丹明101和罗丹明6G荧光量子产率的测试。LIOAS实验结果与我们其中一个实验室开发的基于使用积分球测量表观反射率的方法所得结果一致[米兰达,M.;拉戈里奥,M. G.;圣罗曼,E.《朗缪尔》2004年,20卷,3690 - 3697页],该方法允许同时计算荧光量子产率和无荧光伪影的反射率。制定了量化总体误差和检测异常值的标准。介绍了LIOAS应用于光散射样品的基础理论和实验细节。