Ab'/> Intermolecular vibrational modes and H-bond interactions in crystalline urea investigated by terahertz spectroscopy and theoretical calculation
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Intermolecular vibrational modes and H-bond interactions in crystalline urea investigated by terahertz spectroscopy and theoretical calculation

机译:通过太赫兹光谱研究和理论计算研究了晶体尿素的分子间振动模式和H键相互作用

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AbstractThe characteristic absorption spectra of crystalline urea in 0.6–1.8 THz region have been measured by terahertz time-domain spectroscopy at room temperature experimentally. Five broad absorption peaks were observed at 0.69, 1.08, 1.27, 1.47 and 1.64 THz respectively. Moreover, density functional theory (DFT) calculation has been performed for the isolated urea molecule, and there is no infrared intensity in the region below 1.8 THz. This means that single molecule calculations are failure to predict the experimental spectra of urea crystals. To simulate these spectra, calculations on a cluster of seven urea molecules using M06-2X and B3LYP-D3 are performed, and we found that M06-2X perform better. The observed THz vibrational modes are assigned to bending and torsional modes related to the intermolecular H-bond interactions with the help of potential energy distribution (PED) method. Using the reduced-density-gradient (RDG) analysis, the positions and types of intermolecular H-bond interactions in urea crystals are visualized. Therefore, we can confirm that terahertz spectroscopy can be used as an effective means to detect intermolecular H-bond interactions in molecular crystals.Graphical AbstractDisplay Omitted展开▼
机译:<![cdata [ 抽象 通过Terahertz时域光谱法测量了0.6-1.8 THz区域中结晶尿素的特征吸收光谱实验室温度。在0.69,1.08,1.27,1.47和1.64 ZZ中观察到五个宽吸收峰。此外,已经对分离的脲分子进行了密度泛函理论(DFT)计算,并且在下方的区域中没有红外强度。这意味着单分子计算尚未预测尿素晶体的实验光谱。为了模拟这些光谱,进行使用M06-2X和B3LYP-D3的七种尿素分子集群的计算,并且我们发现M06-2X执行更好。观察到的THz振动模式被分配到与势能分布(PED)方法的帮助下与分子间H键相互作用相关的弯曲和扭转模式。使用降低密度梯度(RDG)分析,可视化尿素晶体中的分子间H键相互作用的位置和类型。因此,我们可以确认太赫兹光谱可以用作检测分子晶体中的分子间H键相互作用的有效手段。 图形抽象 显示省略

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