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Solving the enigma of weak fluorine contacts in the solid state: a periodic DFT study of fluorinated organic crystals

机译:求解固态中弱氟接触的肌肉:氟化有机晶体的周期性DFT研究

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The nature and strength of weak interactions with organic fluorine in the solid state are revealed by periodic density functional theory (periodic DFT) calculations coupled with experimental data on the structure and sublimation thermodynamics of crystalline organofluorine compounds. To minimize other intermolecular interactions, several sets of crystals of perfluorinated and partially fluorinated organic molecules are considered. This allows us to establish the theoretical levels providing an adequate description of the metric and electron-density parameters of the C-FF-C interactions and the sublimation enthalpy of crystalline perfluorinated compounds. A detailed comparison of the C-FF-C and C-HF-C interactions is performed using the relaxed molecular geometry in the studied crystals. The change in the crystalline packing of aromatic compounds during their partial fluorination points to the structure-directing role of C-HF-C interactions due to the dominant electrostatic contribution to these contacts. C-HF-C and C-HO interactions are found to be identical in nature and comparable in energy. The factors that determine the contribution of these interactions to the crystal packing are revealed. The reliability of the results is confirmed by considering the superposition of the electrostatic potential and electron density gradient fields in the area of the investigated intermolecular interactions.
机译:通过周期性函数理论(周期性DFT)计算揭示了固态中的有机氟的弱相互作用的性质和强度,与晶体氟荧光化合物结构和升华热力学的实验数据相结合。为了最小化其他分子间相互作用,考虑几组全氟化和部分氟化有机分子的晶体。这使我们能够建立理论水平,提供C-FF-C相互作用的公制和电子密度参数的足够描述和结晶全氟化化合物的升华焓。使用所研究的晶体中的松弛分子几何形状进行C-FF-C和C-HF-C相互作用的详细比较。芳族化合物在其部分氟化过程中的变化在其部分氟化方面与C-HF-C相互作用的结构引导作用,由于这些触点的显性静电贡献。发现C-HF-C和C-HO相互作用本质上是相同的,并且能量相当。确定了确定这些相互作用与晶体包装的贡献的因素。通过考虑所研究的分子间相互作用区域中的静电电位和电子密度梯度场的叠加来确认结果的可靠性。

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