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Surface-Bulk Vibrational Correlation Spectroscopy

机译:表面体振动相关光谱

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Homo- and heterospectral correlation analysis are powerful methods for investigating the effects of external influences on the spectra acquired using distinct and complementary techniques. Nonlinear vibrational spectroscopy is a selective and sensitive probe of surface structure changes, as bulk molecules are excluded on the basis of symmetry. However, as a result of this exquisite specificity, it is blind to changes that may be occurring in the solution. We demonstrate that correlation analysis between surface-specific techniques and bulk probes such as infrared absorption or Raman scattering may be used to reveal additional details of the adsorption process. Using the adsorption of water and ethanol binary mixtures as an example, we illustrate that this provides support for a competitive binding model and adds new insight into a dimer-to-bilayer transition proposed from previous experiments and simulations.
机译:均谱和异谱相关分析是研究外部影响对使用独特和互补技术获得的光谱的影响的有效方法。非线性振动光谱是表面结构变化的选择性和灵敏探针,因为根据对称性排除了大分子。但是,由于这种出色的特异性,它对解决方案中可能发生的变化视而不见。我们证明了特定表面技术和诸如红外吸收或拉曼散射的体探针之间的相关性分析可用于揭示吸附过程的其他细节。以水和乙醇二元混合物的吸附为例,我们说明这为竞争性结合模型提供了支持,并为从先前实验和模拟中提出的二聚体到双层过渡提供了新的见识。

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