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Absorbance kinetics of dye-doped systems with photochemical first order kinetics

机译:具有光化学一级动力学的染料掺杂体系的吸收动力学

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摘要

Often it is assumed that absorbance decays in photochromic materials with the time dependence of the photochemical kinetics, i.e. exponentially for first order kinetics. Although this may hold in the limiting case of vanishing absorbance, deviations are to be expected for realistic samples, because the local photochemical kinetics slows down with increasing initial absorption and penetration depth of the radiation. We discuss the theory of the kinetics of initially homogeneous photochromic samples and derive analytical solutions. In extension of Tomlinson's theory we find an analytical solution that holds with good approximation even for samples that exhibit a small residual absorption in the saturation limit. The theoretical time dependence of the absorbance originating from photochemical first order kinetics of dye-doped systems is compared with experimental data published by Lafond et al. for fulgides doped in different polymer matrices. (c) 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:通常假设光致变色材料中的吸光度随光化学动力学的时间依赖性而衰减,即对于一阶动力学呈指数关系。尽管这在吸光度消失的极限情况下可能成立,但对于实际样品,可能会出现偏差,因为局部光化学动力学会随着初始吸收和辐射穿透深度的增加而减慢。我们讨论了最初均匀的光致变色样品的动力学理论,并得出了解析解。在汤姆林森理论的扩展中,我们找到了一种解析解决方案,即使对于在饱和极限中表现出较小残留吸收的样品,也可以很好地近似。将源自染料掺杂系统光化学一级动力学的吸光度的理论时间依赖性与Lafond等人发表的实验数据进行了比较。用于掺杂在不同聚合物基质中的子。 (c)2007年WILEY-VCH Verlag GmbH&Co. KGaA,韦恩海姆。

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