首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Investigations of the optical properties of thin, highly absorbing films under attenuated total reflection conditions: Leaky waveguide mode distortions
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Investigations of the optical properties of thin, highly absorbing films under attenuated total reflection conditions: Leaky waveguide mode distortions

机译:在衰减的全反射条件下研究高吸收薄膜的光学特性:泄漏的波导模式畸变

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摘要

Spectra of thin highly absorbing Nafion films doped with Ru(bpy)(3)(2+) on SF11 glass substrates were studied by internal reflection spectroscopy using a single reflection configuration. For the system under study, two modes of light interaction with the film are available: attenuation due to evanescent wave penetration and light propagation within the absorbing film. Unlike evanescent wave spectroscopy, light propagation within the film causes distortions in the measured spectra due to leaky waveguide propagation modes. Upon light propagation in a film doped with Ru(bpy)(3)(2+) spectral shifts up to 50 nm to longer wavelengths can occur and additional absorbance peaks can appear in the spectra. These film-based distortions depend on the complex refractive index, the thickness of the film and the angle of incidence. These effects become significant for an extinction coefficient above 0.01 and a film thickness above 200 nm. It is shown that spectral distortions can lead to quite complex dynamics in the internal reflection spectra upon analyte preconcentration in the film. Ru(bpy)(3)(2+) partitioning into the Nafion film causes significant refractive index changes that in turn alter leaky waveguide mode conditions in the film and, can even lead to a reduction of measured absorbance despite the increase in the extinction coefficient of the film. (c) 2004 Elsevier B.V. All rights reserved.
机译:通过内反射光谱法使用单反射配置研究了掺有Ru(bpy)(3)(2+)的Ru(bpy)(3)(2+)薄膜的高吸收性Nafion薄膜的光谱。对于正在研究的系统,有两种与膜相互作用的光模式:由于e逝波的穿透引起的衰减和光在吸收膜中的传播。与e逝波光谱法不同,由于泄漏的波导传播模式,薄膜内的光传播会导致所测光谱的畸变。在掺杂Ru(bpy)(3)(2+)的薄膜中光传播时,可能发生高达50 nm的光谱偏移,从而产生更长的波长,并且在光谱中还会出现其他吸收峰。这些基于膜的畸变取决于复折射率,膜的厚度和入射角。对于大于0.01的消光系数和大于200nm的膜厚度,这些效果变得显着。结果表明,在薄膜中分析物预富集时,光谱畸变会导致内部反射光谱的动力学非常复杂。 Ru(bpy)(3)(2+)分配到Nafion膜中会引起明显的折射率变化,从而改变膜中的泄漏波导模式条件,甚至会导致消光系数增加,甚至导致测量的吸光度降低电影的(c)2004 Elsevier B.V.保留所有权利。

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