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气相中二甲基喹啉的红外光谱:实验与理论。

Infrared spectra of dimethylquinolines in the gas phase: experiment and theory.

机构信息

Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore-560012, India.

出版信息

J Phys Chem A. 2010 Aug 19;114(32):8351-8. doi: 10.1021/jp1056896.

Abstract

Infrared spectra of atmospherically important dimethylquinolines (DMQs), namely 2,4-DMQ, 2,6-DMQ, 2,7-DMQ, and 2,8-DMQ in the gas phase at 80 degrees C were recorded using a long variable path-length cell. DFT calculations were carried out to assign the bands in the experimentally observed spectra at the B3LYP/6-31G* level of theory. The spectral assignments particularly for the C-H stretching modes could not be made unambiguously using calculated anharmonic or scaled harmonic frequencies. To resolve this problem, a scaled force field method of assignment was used. Assignment of fundamental modes was confirmed by potential energy distributions (PEDs) of the normal modes derived by the scaled force fields using a modified version of the UMAT program in the QCPE package. We demonstrate that for large molecules such as the DMQs, the scaling of the force field is more effective in arriving at the correct assignment of the fundamentals for a quantitative vibrational analysis. An error analysis of the mean deviation of the calculated harmonic, anharmonic, and force field fitted frequencies from the observed frequency provides strong evidence for the correctness of the assignment.

摘要

在 80°C 下,使用长可变路径长度池记录了气相中大气重要的二甲基喹啉(DMQs),即 2,4-DMQ、2,6-DMQ、2,7-DMQ 和 2,8-DMQ 的红外光谱。在 B3LYP/6-31G*理论水平上进行了 DFT 计算,以分配实验观察到的光谱中的谱带。特别是对于 C-H 伸缩模式的光谱分配,不能使用计算的非谐或比例谐频来明确地进行。为了解决这个问题,使用了比例力场分配方法。通过使用 QCPE 包中的 UMAT 程序的修改版本从比例力场导出的正则模态的势能分布(PED),确认了基本模式的分配。我们证明,对于像 DMQs 这样的大分子,力场的缩放在得出正确的基本分配以进行定量振动分析方面更有效。对计算谐频、非谐频和力场拟合频率与观测频率的平均偏差的误差分析为分配的正确性提供了强有力的证据。

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