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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Direct evaluation of individual hydrogen bond energy in situ in intra- and intermolecular multiple hydrogen bonds system
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Direct evaluation of individual hydrogen bond energy in situ in intra- and intermolecular multiple hydrogen bonds system

机译:在分子内和分子间多个氢键系统中直接评估单个氢键能量的原位

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The results of evaluating the individual hydrogen bond (H-bond) strength are expected to be helpful for the rational design of new strategies for molecular recognition or supramolecular assemblies. Unfortunately, there is few obvious and unambiguous means of evaluating the energy of a single H-bond within a multiple H-bonds system. We present a local analytic model, ABEEM?π H-bond energy (HBE) model based on ab initio calculations (MP2) as benchmark, to directly and rapidly evaluate the individual HBE in situ in inter- and intramolecular multiple H-bonds system. This model describes the HBE as the sum of electrostatic and van der Waals (vdW) interactions which all depend upon the geometry and environment, and the ambient environment of H-bond in the model is accounted fairly. Thus, it can fairly consider the cooperative effect and secondary effect. The application range of ABEEM?π HBE model is rather wide. This work has discussed the individual H-bond in DNA base pair and protein peptide dimers. The results indicate that the interactions among donor H atom, acceptor atom as well as those atoms connected to them with 1,2 or 1,3 relationships are all important for evaluating the HBE, although the interaction between the donor H atom and the acceptor atom is large. Furthermore, our model quantitatively indicates the polarization ability of N, O, and S in a new style, and gives the percentage of the polarization effect in HBE, which can not be given by fixed partial charge force field.
机译:预期评估单个氢键(H键)强度的结果将有助于合理设计新的分子识别或超分子组装策略。不幸的是,几乎没有明显和明确的方法来评估多个氢键系统中单个氢键的能量。我们提出了一个本地分析模型,即基于从头算(MP2)作为基准的ABEEM?πH键能(HBE)模型,以直接,快速地在分子间和分子内多个H键系统中评估单个HBE。该模型将HBE描述为静电和范德华(vdW)相互作用的总和,它们均取决于几何形状和环境,并且模型中H键的周围环境被合理考虑。因此,它可以公平地考虑协同效应和次要效应。 ABEEM?πHBE模型的应用范围很广。这项工作已经讨论了DNA碱基对和蛋白质肽二聚体中的单个H键。结果表明,尽管供体H原子与受体原子之间的相互作用,但供体H原子,受体原子以及与它们之间具有1,2或1,3关系的原子之间的相互作用对于评估HBE都很重要。大。此外,我们的模型以一种新的方式定量表示了N,O和S的极化能力,并给出了HBE中极化效应的百分比,这是固定的局部电荷力场无法提供的。

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