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Spectra–Structure Correlations in Isotopomers of Ethanol (CX3CX2OX; X = H D): Combined Near-Infrared and Anharmonic Computational Study

机译:乙醇(CX3CX2OX; X = HD)的异构体的光谱结构相关性:近红外和非谐计算的组合研究

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摘要

The effect of isotopic substitution on near-infrared (NIR) spectra has not been studied in detail. With an exception of few major bands, it is difficult to follow the spectral changes due to complexity of NIR spectra. Recent progress in anharmonic quantum mechanical calculations allows for accurate reconstruction of NIR spectra. Taking this opportunity, we carried out a systematic study of NIR spectra of six isotopomers of ethanol (CX3CX2OX; X = H, D). Besides, we calculated the theoretical spectra of two other isotopomers (CH3CD2OD and CD3CH2OD) for which the experimental spectra are not available. The anharmonic calculations were based on generalized vibrational second-order perturbation theory (GVPT2) at DFT and MP2 levels with several basis sets. We compared the accuracy and efficiency of various computational methods. It appears that the best results were obtained with B2PLYP-GD3BJ/def2-TZVP//CPCM approach. Our simulations included the first and second overtones, as well as binary and ternary combinations bands. This way, we reliably reproduced even minor bands in the spectra of diluted samples (0.1 M in CCl4). On this basis, the effect of isotopic substitution on NIR spectra of ethanol was accurately reproduced and comprehensively explained.
机译:尚未详细研究同位素取代对近红外(NIR)光谱的影响。除少数几个主要频段外,由于NIR光谱的复杂性,很难跟踪光谱变化。非谐量子力学计算的最新进展允许精确重建NIR光谱。借此机会,我们对六种乙醇异构体(CX3CX2OX; X = H,D)的NIR光谱进行了系统研究。此外,我们还计算了其他两种同位素异构体(CH3CD2OD和CD3CH2OD)的理论光谱,而这些光谱没有可用的实验光谱。非谐波计算基于DFT和MP2级别的广义振动二阶微扰理论(GVPT2),并具有多个基本集。我们比较了各种计算方法的准确性和效率。看来使用B2PLYP-GD3BJ / def2-TZVP // CPCM方法可获得最佳结果。我们的模拟包括第一和第二泛音,以及二进制和三进制组合频段。这样,我们可以可靠地在稀释样品的光谱中重现甚至很小的谱带(在CCl4中为0.1 M)。在此基础上,准确再现了同位素取代对乙醇近红外光谱的影响,并对其进行了全面的解释。

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