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Interference effects in the sum frequency generation spectra of thin organic films. II: Applications to different thin-film systems

机译:有机薄膜总和频率产生频谱中的干扰效应。 II:在不同薄膜系统上的应用

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In this paper, the results of the modeling calculations carried out for predicting the interference effects expected in the sum frequency generation (SFG) spectra of a specific thin-layer system, described in the accompanying paper, are tested by comparing them with the experimental spectra obtained for a real thin-layer film comprising an organic monolayer/variable thickness dielectric layer/gold substrate. In this system, two contributions to the SFG spectra arise, a resonant contribution from the organic film and a nonresonant contribution from the gold substrate. The modeling calculations are in excellent agreement with the experimental spectra over a wide range of thicknesses and for different polarization combinations. The introduction of another resonant monolayer adjacent to the gold substrate and with the molecules having a reverse orientation has a significant affect on the spectral shapes which is predicted. If a dielectric substrate such as CaF_2 is used instead of a gold substrate, only the spectral intensities vary with the film thickness but not the spectral shapes. The counterpropagating beam geometry will change both the thickness dependent spectral shapes and the intensity of different vibrational modes in comparison with a copropagating geometry. The influences of these experimental factors, i.e., the molecular orientational structure in the thin film, the nature of the substrate, and the selected incident beam geometry, on the experimental SFG spectra are quantitatively predicted by the calculations. The thickness effects on the signals from a SFG active monolayer contained in a thin liquid-layer cell of the type frequently used for in situ electrochemical measurements is also discussed. The modeling calculation is also valid for application to other thin-film systems comprising more than two resonant SFG active interfaces by appropriate choice of optical geometries and relevant optical properties.
机译:在本文中,通过将模型计算结果与实验光谱进行比较,测试了为预测特定薄层系统的总和频率生成(SFG)光谱中预期的干扰效应而进行的建模计算结果对于包含有机单层/可变厚度介电层/金基板的真实薄膜,获得了该膜。在该系统中,出现了对SFG光谱的两个贡献,有机膜的谐振贡献和金衬底的非谐振贡献。建模计算与各种厚度和不同偏振组合下的实验光谱非常吻合。与金基底相邻并且分子具有相反取向的另一共振单层的引入对所预测的光谱形状具有显着影响。如果使用诸如CaF_2的介电基板代替金基板,则仅光谱强度随膜厚而变化,而光谱形状则不变化。与共同传播的几何形状相比,反向传播的束几何形状将改变厚度相关的光谱形状和不同振动模式的强度。通过计算定量地预测了这些实验因素,即薄膜中的分子取向结构,基底的性质以及所选择的入射光束几何形状对实验性SFG光谱的影响。还讨论了厚度对来自SFG活性单层信号的信号影响,该信号包含在通常用于原位电化学测量的薄液层电池中。建模计算也适用于应用由光学几何形状和相关的光学性质的适当选择包括多于两个谐振SFG活动接口其他薄膜系统。

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