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通过从头算非谐方法获得的小分子甲胺团簇的振动光谱。

Vibrational spectra of small methylamine clusters accessed by an ab initio anharmonic approach.

作者信息

Huang Qian-Rui, Li Ying-Cheng, Ho Kun-Lin, Kuo Jer-Lai

机构信息

Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10617, Taiwan.

出版信息

Phys Chem Chem Phys. 2018 Mar 14;20(11):7653-7660. doi: 10.1039/c8cp00533h.

DOI:10.1039/c8cp00533h
PMID:29497724
Abstract

Methylamine (MMA) is one of the simplest amines, and the vibrational spectra of its dimer have recently been obtained experimentally. The vibrational spectra of NH stretch modes were well resolved, but the complex features of the CH group could not be fully accounted for even with the assistance of ab initio molecular dynamics (AIMD) with various density functional methods. In this study, we carried out anharmonic vibrational calculations on MMA clusters up to tetramers using MP2/aug-cc-pVDZ to examine vibrational coupling among CH/NH and compute the vibrational spectra of these clusters between 2800 and 3500 cm. We found that the main origin of the complexity between 2800 and 3000 cm was caused by Fermi resonance (FR) between the stretching and bending overtones of the CH group. This spectral feature becomes simpler in trimers and tetramers. Furthermore, Fermi resonance in the NH group is found to be very strong. In the MMA dimer, no noticeable FR features can be found; however, in its trimers and tetramers, the enhancement of hydrogen bond strength due to the cooperative effect will cause the N-H stretching mode to red-shift to revert the energy order of the fundamental of the N-H stretch and overtone of N-H bending between n = 3 and n = 4. Therefore, significant re-distribution of the intensities of the bands at 3200 and 3300 cm should be seen.

摘要

甲胺(MMA)是最简单的胺类之一,其 dimer 的振动光谱最近已通过实验获得。NH 伸缩模式的振动光谱得到了很好的分辨,但即使借助各种密度泛函方法的从头算分子动力学(AIMD),CH 基团的复杂特征也无法得到充分解释。在本研究中,我们使用 MP2/aug-cc-pVDZ 对高达四聚体的 MMA 簇进行了非谐振动计算,以研究 CH/NH 之间的振动耦合,并计算这些簇在 2800 至 3500 cm 之间的振动光谱。我们发现,2800 至 3000 cm 之间复杂性的主要来源是 CH 基团的伸缩和弯曲泛音之间存在费米共振(FR)。这种光谱特征在三聚体和四聚体中变得更简单。此外,发现 NH 基团中的费米共振非常强烈。在 MMA 二聚体中,没有发现明显的 FR 特征;然而,在其三聚体和四聚体中,由于协同效应导致的氢键强度增强将使 N-H 伸缩模式发生红移,从而使 n = 3 和 n = 4 之间 N-H 伸缩基频和 N-H 弯曲泛音的能量顺序反转。因此,在 3200 和 3300 cm 处的谱带强度应会有明显的重新分布。

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