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同位素取代对甲醇近红外光谱影响的光谱学与量子力学计算研究

Spectroscopic and Quantum Mechanical Calculation Study of the Effect of Isotopic Substitution on NIR Spectra of Methanol.

作者信息

Grabska Justyna, Czarnecki Mirosław A, Beć Krzysztof B, Ozaki Yukihiro

机构信息

Department of Chemistry, School of Science and Technology, Kwansei Gakuin University , Sanda, Hyogo 669-1337, Japan.

Faculty of Chemistry, University of Wrocław , F. Joliot-Curie 14, 50-383 Wrocław, Poland.

出版信息

J Phys Chem A. 2017 Oct 19;121(41):7925-7936. doi: 10.1021/acs.jpca.7b08693. Epub 2017 Oct 9.

Abstract

In this work, we studied methanol and its deuterated derivatives (CHOH, CHOD, CDOH, CDOD) by NIR spectroscopy and anharmonic quantum chemical calculations. Vibrational bands corresponding to up to three quanta transitions (first and second overtones, binary and ternary combination modes) were predicted by the use of the VPT2 route. The accuracy of prediction of NIR modes was evaluated through density functional theory (DFT) with selected density functionals and basis sets. On the basis of the theoretical NIR spectra, detailed band assignments for all studied molecules were proposed. It was found that the pattern of bands in NIR spectra of deuterated methanols can be used for identification of isotopically equalized forms. Calculations of NIR spectra of all possible forms of CXXXOX (X = H, D) molecules demonstrated that the isotopic contamination can be identified due to a coexistence of bands specific to OH and OD groups. Also, bands from partially deuterated methyl groups can be distinguished in NIR spectra. Since the VPT2 framework is known to be sensitive to inaccuracy in the case of highly anharmonic modes, we obtained an independent insight by numerical solving of the time-independent Schrödinger equation corresponding to the O-X stretching mode scanned within -0.4 to 2.0 Å over a dense grid of 0.005 Å. This way the energies of vibrational levels of the CX1X2X3OX4 (X = H, D) isotopomers and the corresponding transition frequencies were obtained with high accuracy (<0.1 cm). The change in normal coordinate influences the reduced mass of the oscillator and thus its frequency. Our results lead to a conclusion that the effect of deuterization of the methyl group introduces a very specific and consistent frequency shift of the first overtone of the O-X stretching mode depending on the substitution of X1, X2, or X3 positions (<2 cm). However, the pattern of this shift is not reproduced accurately and is also largely overestimated by VPT2 calculations.

摘要

在这项工作中,我们通过近红外光谱和非谐量子化学计算研究了甲醇及其氘代衍生物(CHOH、CHOD、CDOH、CDOD)。利用VPT2方法预测了对应于高达三个量子跃迁(一次和二次泛音、二元和三元组合模式)的振动带。通过使用选定的密度泛函和基组的密度泛函理论(DFT)评估了近红外模式预测的准确性。基于理论近红外光谱,对所有研究分子提出了详细的谱带归属。结果发现,氘代甲醇近红外光谱中的谱带模式可用于识别同位素均衡形式。对CXXXOX(X = H,D)分子所有可能形式的近红外光谱计算表明,由于OH和OD基团特有的谱带共存,可以识别同位素污染。此外,在近红外光谱中可以区分部分氘代甲基的谱带。由于已知VPT2框架在高非谐模式情况下对不准确性敏感,我们通过数值求解与在-0.4至2.0 Å范围内扫描的O-X伸缩模式相对应的不含时薛定谔方程,在0.005 Å的密集网格上获得了独立的见解。通过这种方式,高精度(<0.1 cm)地获得了CX1X2X3OX4(X = H,D)同位素异构体的振动能级能量和相应的跃迁频率。正常坐标的变化会影响振子的约化质量,从而影响其频率。我们的结果得出结论,甲基的氘代效应会根据X1、X2或X3位置的取代引入O-X伸缩模式一次泛音非常特定且一致的频移(<2 cm)。然而,这种频移模式没有被准确再现,并且VPT2计算也在很大程度上高估了它。

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