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Time domain simulations of chemical bonding effects in surface-enhanced spectroscopy

机译:表面增强光谱中化学键合效应的时域模拟

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摘要

The atom-centered density-matrix propagation method is used to illustrate how time-dependent conformational changes affect the electronic structure and derived spectroscopic properties of a prototypical finite metal cluster-bound π-conjugated organic complex, Ag_7-benzenethiol. We establish that there is considerable conformational flexibility to the model structure, even at relatively low temperatures, which influences the predicted spectroscopic properties. Namely, the computed electron densities, dipoles, and polarizabilities are all dictated by torsional motion which controls the coupling between the π-framework of the chemisorbed molecular system and the cluster.
机译:以原子为中心的密度矩阵传播方法用于说明时间依赖性构象变化如何影响原型有限金属簇结合的π共轭有机络合物Ag_7-苯硫醇的电子结构和衍生的光谱性质。我们确定即使在相对较低的温度下,模型结构也具有相当大的构象灵活性,这会影响预测的光谱性质。即,计算出的电子密度,偶极子和极化率均由扭转运动决定,该扭转运动控制化学吸附分子系统的π骨架与团簇之间的耦合。

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