首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Limitations of the molecular multipole expansion treatment of electrostatic interactions for C-H center dot center dot center dot O and O-H center dot center dot center dot O hydrogen bonds and application of a general charge density approach
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Limitations of the molecular multipole expansion treatment of electrostatic interactions for C-H center dot center dot center dot O and O-H center dot center dot center dot O hydrogen bonds and application of a general charge density approach

机译:C-H中心点中心点中心点O和O-H中心点中心点中心点O氢键的静电相互作用的分子多极膨胀处理的局限性和一般电荷密度方法的应用

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A molecular multipole expansion treatment (up to hexadecapole) is examined for its accuracy in describing hydrogen-bond electrostatic interactions, with particular reference to explaining the differences between blue-shifted C-H... O and red-shifted O-H... O bonds. In interactions of H2O and CH4 With point charges at hydrogen-bonding distances, we find that the molecular multipole treatment not only fails to reproduce ab initio energies but also forces on OH or CH bonds, and therefore cannot properly account for the electrostatic component of the interaction. A treatment based on a molecule's permanent charge density and its derivatives and the charge density and its derivatives induced by an external multipole distribution is in full accord with ab initio results, as shown by application to models of the H2O-H2O and CH4-FH systems. Such a charge density approach provides a fundamental basis for understanding the importance of interaction forces in initiating structural change and thereby altering molecular properties.
机译:在描述氢键静电相互作用时,特别是解释了蓝移C-H ... O和红移O-H ... O键之间的差异时,检查了分子多极膨胀处理(至多十六极)的准确性。在H2O和CH4与氢键距离处的点电荷的相互作用中,我们发现分子多极子处理不仅不能重生从头开始的能量,而且不能作用在OH或CH键上,因此不能正确地解释氢的静电成分。相互作用。基于分子的永久电荷密度及其衍生物以及由外部多极分布引起的电荷密度及其衍生物的处理与从头算的结果完全一致,如应用于H2O-H2O和CH4-FH系统的模型所示。这种电荷密度方法为理解相互作用力在引发结构变化从而改变分子性质方面的重要性提供了基础。

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