首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Third-order effects in resonant sum-frequencygeneration signals at electrified metal/liquid interfaces
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Third-order effects in resonant sum-frequencygeneration signals at electrified metal/liquid interfaces

机译:带电金属/液体界面上共振和频产生信号的三阶效应

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Vibrational sum-frequency-generation (SFG) spectroscopy experiments at electrified interfaces involve incident laser radiation at frequencies in the IR and near-IR/visible regions as well as a static electric field on the surface. Here we show that mixing the three fields present on the surface can result in third-order effects in resonant SFG signals. This was achieved for closed packed self-assembled monolayers (SAMs) with molecular groups of high optical nonlinearity and surface potentials similar to those typically applied in cyclic voltammograms. Broadband SFG spectroscopy was applied to study a hydrophobic well-ordered araliphatic SAM on an Au(111) surface using a thin-layer analysis cell for spectro-electrochemical investigations in a 100 mM NaOH electrolyte solution. Resonant contributions were experimentally separated from nonresonant contributions of the Au substrate and theoretically analyzed using a fitting function including third-order terms. The resulting ratio of third-order to second-order susceptibilities was estimated to be(10-10) m/V.
机译:带电界面的振动总和频率产生(SFG)光谱实验涉及入射激光辐射,其入射频率为IR和近红外/可见光区域中的频率,以及表面上的静电场。在这里,我们表明将表面上存在的三个场混合会导致共振SFG信号产生三阶效应。对于具有高光学非线性和表面电势的分子基团类似于循环伏安图中通常使用的分子的封闭堆积自组装单分子层(SAM),可以实现这一点。宽带SFG光谱用于在100 mM NaOH电解质溶液中进行光谱电化学研究的薄层分析池,用于研究Au(111)表面上疏水性良好的芳脂族SAM。实验上将共振贡献与Au基板的非共振贡献分开,并使用包括三阶项的拟合函数从理论上进行了分析。所得到的三阶与二阶磁化率之比估计为(10-10)m / V。

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