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非基模对中红外光谱的影响:脂肪醚的非谐密度泛函理论研究

Influence of Non-fundamental Modes on Mid-infrared Spectra: Anharmonic DFT Study of Aliphatic Ethers.

作者信息

Beć Krzysztof B, Grabska Justyna, Ozaki Yukihiro, Hawranek Jerzy P, Huck Christian W

机构信息

Institute of Analytical Chemistry and Radiochemistry, Leopold-Franzens University , Innrain 80-82, 6020 Innsbruck, Austria.

School of Science and Technology, Kwansei Gakuin University , 2-1 Gakuen, Sanda, Hyogo 669-1337, Japan.

出版信息

J Phys Chem A. 2017 Feb 23;121(7):1412-1424. doi: 10.1021/acs.jpca.6b11734. Epub 2017 Feb 13.

Abstract

Fundamental and non-fundamental vibrational modes, first overtones, and binary combination modes of selected aliphatic ethers (di-n-propylether, di-iso-propylether, n-butylmethyl ether, n-butylethyl ether, di-n-butyl ether, tert-buytlmethyl ether, and tert-amylmethyl ether) were modeled in a fully anharmonic generalized second-order vibrational perturbation theory (GVPT2) approach on the DFT-B2PLYP/SNST level. The modeling procedure of theoretical line shapes took into account conformational isomers of studied molecules. The calculated spectra of the above ethers were compared to the corresponding experimental spectra in the infrared (IR) region (4000-560 cm) of the absorption index k(ν) derived from the neat liquid thin-film transmission data. It was found that IR spectra of aliphatic ethers are heavily influenced by the bands originating from non-fundamental modes, particularly from the combination modes in the C-H stretching region (3200-2800 cm). Because of the effects of vibrational resonances, the intensities of overtones and combination bands originating from methyl and methylene deformation modes increase sufficiently to influence the experimental line shape in this region. Less significant contributions from non-fundamental vibrational modes were noticed in the lower IR region (1600-560 cm), particularly in the vicinity of the C-O stretching band. The 2700-1600 cm region, which is rich in weak bands due to non-fundamental vibrations, was reproduced accurately as well. It was concluded that a fully anharmonic approach allows significantly more accurate reproduction of the complex IR line shapes, particularly in the C-H stretching region of aliphatic ethers. On the basis of the achieved agreement between the experimental and calculated spectra, it may be concluded that the anharmonic GVPT2 method can adequately reproduce the anharmonic effects and vibrational resonances in particular, influencing the IR spectra of aliphatic ethers. The results obtained in this study show that the non-fundamental modes may play a significant role in shaping the IR spectra of aliphatic ethers and similar molecules in the neat liquid phase.

摘要

在DFT - B2PLYP/SNST水平上,采用完全非谐广义二阶振动微扰理论(GVPT2)方法对选定脂肪族醚(二正丙基醚、二异丙基醚、正丁基甲基醚、正丁基乙基醚、二正丁基醚、叔丁基甲基醚和叔戊基甲基醚)的基频和非基频振动模式、一次泛音和二元组合模式进行了建模。理论线形的建模过程考虑了所研究分子的构象异构体。将上述醚的计算光谱与从纯液体薄膜透射数据得出的红外(IR)区域(4000 - 560 cm)吸收指数k(ν)的相应实验光谱进行了比较。研究发现,脂肪族醚的红外光谱受到源自非基频模式的谱带的严重影响,特别是来自C - H伸缩区域(3200 - 2800 cm)的组合模式。由于振动共振的影响,源自甲基和亚甲基变形模式的泛音和组合带的强度充分增加,从而影响该区域的实验线形。在较低的红外区域(1600 -

560 cm),特别是在C - O伸缩带附近,非基频振动模式的贡献不太显著。2700 - 1600 cm区域由于非基频振动而富含弱带,该区域也得到了准确再现。研究得出结论,完全非谐方法能够更准确地再现复杂的红外线形,特别是在脂肪族醚的C - H伸缩区域。基于实验光谱和计算光谱之间达成的一致性,可以得出结论,非谐GVPT2方法能够充分再现非谐效应,特别是振动共振,从而影响脂肪族醚的红外光谱。本研究获得的结果表明,非基频模式在塑造纯液相中脂肪族醚和类似分子的红外光谱方面可能发挥重要作用。

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