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Effect of displacement and distortion of potential energy surfaces and overlapping resonances of electronic transitions on surface-enhanced Raman scattering:Models and ab initio theoretical calculation

机译:势能表面的位移和畸变以及电子跃迁的重叠共振对表面增强拉曼散射的影响:模型和从头算理论计算

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摘要

A previously developed theory for the temperature-dependent resonance Raman scattering is used to study the surface-enhanced Raman scattering.Two models,the displaced oscillator model and the displaced-distorted oscillator model,based on the harmonic potential energy surfaces are carried out to calculate the surface-enhanced Raman scattering excitation profiles of the pyridine molecule adsorbed on a silver electrode,for which the density functional theory method is applied to evaluate the potential energy surfaces of the adsorption structure.In this framework,the distortion effect on the surface-enhanced Raman scattering will be discussed by comparing both models.The overlapping resonance of multiexcited electronic transitions is also studied,in which the interference between electronic transitions has been taken into account.It will be used to study the abnormal band at 1005.6 cm~(-1)with the exciting radiation 457.9 nm.
机译:利用以前开发的温度相关共振拉曼散射理论来研究表面增强拉曼散射。基于谐波势能面,建立了位移振荡器模型和位移失真振荡器模型两个模型进行计算。吸附在银电极上的吡啶分子的表面增强拉曼散射激发曲线,应用密度泛函理论方法评估了吸附结构的势能面。在此框架下,表面增强的畸变效应将通过比较两个模型讨论拉曼散射。还研究了多激发电子跃迁的重叠共振,其中考虑了电子跃迁之间的干扰,将用于研究1005.6 cm〜(-1)处的异常谱带。 )与457.9 nm的激发辐射。

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