非谐性
拉曼光谱
红外光谱学
谱线
缩放比例
分子振动
化学
势能面
势能
分子物理学
光谱学
热带
正常模式
红外线的
量子
计算化学
原子物理学
物理
分子
光学
量子力学
振动
几何学
数学
有机化学
作者
Paweł T. Panek,Christoph R. Jacob
标识
DOI:10.1021/acs.jpclett.6b01451
摘要
Because of the size of polypeptides and proteins, the quantum-chemical prediction of their vibrational spectra presents an exceptionally challenging task. Here, we address one of these challenges, namely, the inclusion of anharmonicities. By performing the expansion of the potential energy surface in localized-mode coordinates instead of the normal-mode coordinates, it becomes possible to calculate anharmonic vibrational spectra of polypeptides efficiently and reliably. We apply this approach to calculate the infrared, Raman, and Raman optical activity spectra of helical alanine polypeptides consisting of up to 20 amino acids. We find that while anharmonicities do not alter the band shapes, simple scaling procedures cannot account for the different shifts found for the individual bands. This closes an important gap in theoretical vibrational spectroscopy by making it possible to quantify the anharmonic contributions and opens the door to a first-principles calculation of multidimensional vibrational spectra.
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