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首页> 外文期刊>International Journal of Quantum Chemistry >Effect of Molecular Vibrations on the MD/QC-Simulated Absorption Spectra
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Effect of Molecular Vibrations on the MD/QC-Simulated Absorption Spectra

机译:分子振动对MD / QC模拟吸收光谱的影响

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Effect of molecular vibrations on the absorption spectra simulated via a sequential approach combining molecular dynamics (MD) with quantum-chemical calculations has been investigated. Simulated spectra have been obtained from the time-dependent density functional theory results averaged over series of molecular geometries retrieved from Born-Oppenheimer MD trajectories. Distributions of bond lengths have been analyzed and related to the features of calculated spectra. For NVE simulations of small systems, absorption spectra exhibit bimodal bandshape as a result of classical treatment of vibrations. For NVE trajectories of larger systems or simulations in the NVT ensemble calculated absorption bands are symmetric, however, they may not agree with the results of Franck-Condon analysis. These results are practical manifestations of effects predicted theoretically from general principles. Consequences for the modeling of absorption spectra have been discussed.
机译:通过结合分子动力学(MD)和量子化学计算的顺序方法,研究了分子振动对吸收光谱的影响。从随时间变化的密度泛函理论结果中获得了模拟光谱,这些结果是从Born-Oppenheimer MD轨迹中检索到的一系列分子几何形状的平均值。分析了键长的分布,并与计算光谱的特征有关。对于小型系统的NVE模拟,由于对振动的经典处理,吸收光谱呈现双峰带状。对于较大系统的NVE轨迹或NVT集合中的模拟,计算得出的吸收带是对称的,但是,它们可能与Franck-Condon分析的结果不一致。这些结果是根据一般原理从理论上预测的效果的实际体现。已经讨论了吸收光谱建模的后果。

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