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酰胺中羰基伸缩带作为洛伦兹振子。从N-甲基甲酰胺和二-N,N-甲基甲酰胺的近红外和中红外光谱洞察液相中的非谐性和局部环境。

Carbonyl stretching band in amides as Lorentz oscillator. Insights into anharmonicity and local environment in the liquid phase from NIR and MIR spectra of N-methylformamide and di-N,N-methylformamide.

作者信息

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

机构信息

Institute of Analytical Chemistry and Radiochemistry, University of Innsbruck, Innsbruck, Austria.

Institute of Analytical Chemistry and Radiochemistry, University of Innsbruck, Innsbruck, Austria.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 5;324:124954. doi: 10.1016/j.saa.2024.124954. Epub 2024 Aug 13.

Abstract

We investigated the anharmonicity and intermolecular interactions of N-methylformamide (NMF) and di-N,N-methylformamide (DMF) in the neat liquid phase with particular interest in the amide bands. The vibrational spectra, complex refractive index, and complex electric permittivity were determined in in the mid- (MIR) and near-infrared (NIR) regions (11,500-560 cm; 870-17857 nm). Dispersion analysis was based on the Classical Damped Harmonic Oscillator (CDHO) and simultaneous modelling of the real and imaginary components of the spectra. This data delivered insights into the vibrational energy dissipation and self-association in liquid amides. Identification of the MIR and NIR bands was based on anharmonic GVPT2//B3LYP/6-311++G(d,p) calculations. DMF and NMF follow distinct self-association, evidenced in the MIR fingerprint by the two components of the νCO, the analog of the Amide I band. These conclusions are supported by the structural information derived from the NIR spectra. Furthermore, the contribution of overtones and combination bands in the MIR spectra of amides was examined. The conclusions on molecular interactions and structural dynamics of NMF and DMF contribute to a deeper understanding of the effects of changes in the local environment of the amide group.

摘要

我们研究了纯液相中N-甲基甲酰胺(NMF)和二-N,N-甲基甲酰胺(DMF)的非谐性和分子间相互作用,特别关注酰胺带。在中红外(MIR)和近红外(NIR)区域(11,500 - 560 cm;870 - 17857 nm)测定了振动光谱、复折射率和复电容率。色散分析基于经典阻尼谐振子(CDHO)以及对光谱实部和虚部的同时建模。这些数据揭示了液体酰胺中的振动能量耗散和自缔合。MIR和NIR带的识别基于非谐GVPT2//B3LYP/6 - 311++G(d,p)计算。DMF和NMF遵循不同的自缔合,在MIR指纹图谱中由νCO的两个分量(类似于酰胺I带)证明。这些结论得到了从NIR光谱得出的结构信息的支持。此外,还研究了酰胺MIR光谱中泛音和组合带的贡献。关于NMF和DMF分子间相互作用和结构动力学的结论有助于更深入地理解酰胺基团局部环境变化的影响。

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