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A theoretical perspective of the nature of hydrogen-bond types - the atoms in molecules approach

机译:氢键类型本质的理论观点-分子中的原子接近

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Hydrogen bonds and their strength were analysed based on their X-H proton-donor bond properties and the parameters of the H-Y distance (Y proton acceptor). Strong, moderate and weak interactions in hydrogen-bond types were verified through the proton affinities of bases (PA), deprotanation enthalpies of acids (DPE) and the chemical shift (σ). The aromaticity and anti-aromaticity were analysed by means of the NICS (0) (nucleus-independent chemical shift), NICS (1) and ΔNICS (0), ΔNICS (1) of hydrogen-bonded molecules. The strength of a hydrogen bond depends on the capacity of hydrogen atom engrossing into the electronegative acceptor atom. The correlation between the above parameters and their relations were discussed through curve fitting. Bader's theory of atoms in molecules has been applied to estimate the occurrence of hydrogen bonds through eight criteria reported by Popelier et al. The lengths and potential energy shifts have been found to have a strong negative linear correlation, whereas the lengths and Laplacian shifts have a strong positive linear correlation. This study illustrates the common factors responsible for strong, moderate and weak interactions in hydrogen-bond types.
机译:氢键及其强度是基于它们的X-H质子给体键性质和H-Y距离(Y质子受体)参数进行分析的。氢键类型的强,中和弱相互作用通过碱的质子亲和力(PA),酸的去质子化焓(DPE)和化学位移(σ)进行了验证。借助氢键分子的NICS(0)(与核无关的化学位移),NICS(1)和ΔNICS(0),ΔNICS(1)分析芳香性和抗芳香性。氢键的强度取决于充入负电性受体原子的氢原子的容量。通过曲线拟合讨论了上述参数及其关系之间的相关性。 Bader理论中的分子原子已通过Popelier等人报告的八项标准用于估计氢键的存在。已经发现长度和势能位移具有强的负线性相关性,而长度和拉普拉斯位移具有强的正线性相关性。这项研究说明了氢键类型中引起强,中和弱相互作用的共同因素。

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