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Application of London-type dispersion corrections in solid-state density functional theory for predicting the temperature-dependence of crystal structures and terahertz spectra

机译:伦敦型色散校正在固态密度泛函理论中用于预测晶体结构和太赫兹光谱的温度依赖性的应用

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摘要

Solid-state density functional theory (DFT) has been shown to be a valuable tool for the simulation of low-frequency vibrational motions in molecular crystals. While it is typically required that an experimentally known crystal structure be used as the initial input for these types of calculations, it is sometimes found that suitable crystallographic data are not easily obtainable. In this study, the low-temperature unit cell structure of the β polymorph of deuterated oxalic acid dihydrate, for which a structure has only been reported at room temperature, was predicted using solid-state DFT augmented with a modified empirical correction for weak long-range dispersive interactions. The dispersion correction parameters were optimized against the known 100 K crystal structure of the α polymorph, and then used for full-geometry optimization of the β crystal structure. Using this predicted structure for the β polymorph, the observed cryogenic THz spectrum of a mixture of deuterated oxalic acid dihydrate polymorphs was simulated.
机译:固态密度泛函理论(DFT)已被证明是用于模拟分子晶体中低频振动运动的有价值的工具。尽管通常要求将实验已知的晶体结构用作这些类型的计算的初始输入,但有时发现不容易获得合适的晶体学数据。在这项研究中,使用固态DFT并结合改进的经验校正法修正了弱长效DFT预测的氘化草酸二水合物β多晶型物的低温晶胞结构(仅在室温下才报道这种结构)。范围色散相互作用。针对已知的α多晶型物的100 K晶体结构优化了色散校正参数,然后将其用于β晶体结构的全几何优化。使用β多晶型物的这种预测结构,模拟了氘化草酸二水合物多晶型物混合物的观察到的低温THz光谱。

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