Modeling of fluorescence quantum yields of supported dyes Aluminium carboxyphthalocyanine on cellulose

M. Lagorio, L. Dicelio, M. Litter, E. S. Román
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引用次数: 67

Abstract

Aggregation equilibrium and the fluorescence properties of hydroxoaluminium tricarboxymonoamidephthalocyanine adsorbed on microgranular cellulose have been studied at different dye loadings. Up to a concentration of nearly 3 × 10−6 mol phthalocyanine (g cellulose)−1 diffuse reflectance spectra may be interpreted on the basis of a simple monomer–dimer equilibrium. Monomer and dimer spectra are similar to the spectra of the monomeric dye in solution. The solid-state dimer spectrum is red-shifted with respect to that of the monomer and this is attributed to the coplanarity of dimers. Fluorescence spectra and quantum yields show typical effects of re-absorption and re-emission of light. In particular, the observed fluorescence quantum yields depend on concentration and span the range 0.29–0.07. To account for these effects as well as the effect of aggregation on fluorescence quantum yields and to obtain corrected fluorescence spectra a model based on the Kubelka–Munk theory of diffuse reflectance is developed. The application of this model to the case under study yields a true fluorescence quantum yield ϕ = 0.46 ± 0.02 in the whole range of concentrations, which is slightly higher than the value found for the same dye in dimethyl sulfoxide solution.
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纤维素上负载染料羧酞菁铝荧光量子产率的建模
研究了三羧基单酰胺酞菁羟铝在微颗粒纤维素上吸附的聚合平衡和荧光性质。高达近3 × 10−6 mol酞菁(g纤维素)−1的漫反射光谱可以在简单的单体-二聚体平衡的基础上解释。单体和二聚体的光谱与溶液中单体染料的光谱相似。固态二聚体的光谱相对于单体的光谱发生红移,这是由于二聚体的共平面性。荧光光谱和量子产率表现出典型的光的再吸收和再发射效应。特别是,观察到的荧光量子产率取决于浓度,范围为0.29-0.07。为了考虑这些影响以及聚集对荧光量子产率的影响,并获得校正的荧光光谱,建立了基于Kubelka-Munk漫反射理论的模型。将该模型应用于所研究的情况下,在整个浓度范围内产生真正的荧光量子产率φ = 0.46±0.02,略高于在二甲亚砜溶液中发现的相同染料的值。
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