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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Analysis of Intermolecular Weak Interactions and Vibrational Characteristics for Vanillin and Ortho-Vanillin by Terahertz Spectroscopy and Density Functional Theory
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Analysis of Intermolecular Weak Interactions and Vibrational Characteristics for Vanillin and Ortho-Vanillin by Terahertz Spectroscopy and Density Functional Theory

机译:太赫兹光谱和密度函数理论对香草蛋白和邻香肠的分子间弱相互作用和振动特性分析

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摘要

In this article, the characteristic absorption spectra of Vanillin and ortho-Vanillin were investigated by terahertz time-domain spectroscopy (THz-TDS) in the range of 0.4-2.0 THz. Using quantum chemistry tools, density functional theory calculations were performed to obtain the theoretical THz spectra. To better understand the THz absorption spectra on a molecular level and to systematically and comprehensively interpret the origin of the characteristic absorption peaks, the vibrational characteristics and the intermolecular weak interactions of these two compounds were analyzed using a cluster model. We used the vibrational mode automatic relevance determination method to assign the vibrational modes of all absorption peaks and provide the percentage contribution of these modes. The vibrational modes of Vanillin and ortho-Vanillin were mainly dihedral angle torsion. The intermolecular weak interactions were analyzed using the independent gradient model based on Hirshfeld partition of molecular density method. The results indicated that the weak interaction types of Vanillin and ortho-Vanillin were dominated by van der Waals interaction. This work has demonstrated that using THz-TDS combined with quantum chemical calculations is an effective way to identify and investigate isomers. This method has significant potential applications for exploring the relationship between the biomolecular structure and the material performance.
机译:在本文中,通过Terahertz时域光谱(THz-TDS)研究了香草蛋白和邻香兰的特征吸收光谱在0.4-2.0至0塔的范围内。使用量子化学工具,进行密度函数理论计算以获得理论THz光谱。为了更好地理解分子水平上的THz吸收光谱,并系统地和全面地解释特征吸收峰的来源,使用簇模型分析这两种化合物的振动特性和分子间弱相互作用。我们使用振动模式自动相关性确定方法来分配所有吸收峰的振动模式,并提供这些模式的百分比贡献。香草蛋白和邻香兰的振动模式主要是二对角扭转。基于分子密度法的HIRSHFELD分区的独立梯度模型分析了分子间弱相互作用。结果表明,香草蛋白和邻苯胺的弱相互作用类型由van der Waals相互作用主导。这项工作表明,使用THz-TDS与量子化学计算结合是一种识别和调查异构体的有效方法。该方法具有重要的潜在应用,用于探索生物分子结构与材料性能之间的关系。

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