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首页> 外文期刊>Journal of molecular graphics & modelling >Estimation of boiling points using density functional theory with polarized continuum model solvent corrections
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Estimation of boiling points using density functional theory with polarized continuum model solvent corrections

机译:使用密度泛函理论和极化连续介质模型溶剂校正估算沸点

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摘要

An empirical method for estimation of the boiling points of organic molecules based on density functional theory (DFT) calculations with polarized continuum model (PCM) solvent corrections has been developed. The boiling points are calculated as the sum of three contributions. The first term is calculated directly from the structural formula of the molecule, and is related to its effective surface area. The second is a measure of the electronic interactions between molecules, based on the DFT-PCM solvation energy, and the third is employed only for planar aromatic molecules. The method is applicable to a very diverse range of organic molecules, with normal boiling points in the range of -50 to 500.C, and includes ten different elements (C, H, Br, Cl, F, N, O, P, S and Si). Plots of observed versus calculated boiling points gave R ~2 = 0.980 for a training set of 317 molecules, and R ~2 = 0.979 for a test set of 74 molecules. The role of intramolecular hydrogen bonding in lowering the boiling points of certain molecules is quantitatively discussed.
机译:开发了一种基于密度泛函理论(DFT)计算和极化连续模型(PCM)溶剂校正的有机分子沸点估算的经验方法。沸点计算为三个贡献的总和。第一项直接从分子的结构式计算得出,并且与有效表面积有关。第二个是基于DFT-PCM溶剂化能量的分子之间电子相互作用的量度,第三个仅用于平面芳族分子。该方法适用于范围很广的有机分子,正常沸点在-50至500.C之间,并且包括十种不同的元素(C,H,Br,Cl,F,N,O,P, S和Si)。对于317个分子的训练组,观察到的沸点与计算沸点的关系图得出R〜2 = 0.980,对于74个分子的测试组,R〜2 = 0.979。定量讨论了分子内氢键在降低某些分子沸点中的作用。

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