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氢键形成与多中心π电子离域之间的相互作用:分子内氢键

Interplay between hydrogen-bond formation and multicenter pi-electron delocalization: intramolecular hydrogen bonds.

作者信息

Lenain Pieterjan, Mandado Marcos, Mosquera Ricardo A, Bultinck Patrick

机构信息

Department of Physical Chemistry, University of Vigo, As Lagoas (Marcosende) sn, 36310 Vigo, Galicia, Spain.

出版信息

J Phys Chem A. 2008 Oct 23;112(42):10689-96. doi: 10.1021/jp805084n. Epub 2008 Sep 27.

Abstract

The specific case of intramolecular hydrogen bonds assisted by pi-electron delocalization is thoroughly investigated using multicenter delocalization analysis. The effect of the pi-electron delocalization on the intramolecular hydrogen-bond strength is determined by means of the relative molecular energies of "open" and "closed" structures, calculated at the B3LYP/6-311++G(d,p) level of theory. These relative energies are compared to variations in the multicenter electron delocalization indices and covalent hydrogen-bond indices, which are shown to correlate very well with the relative strength of the intramolecular hydrogen bonds studied. The multicenter electron delocalization indices and covalent bond indices have been computed using the quantum theory of atoms in molecules approach. The hydrogen bonds are formed with oxygen, nitrogen, or sulfur as acceptor atom, which are also the atoms considered to be bonded to the donor hydrogen. Malonaldehyde is taken as reference; the substitution of oxygen by other atoms at the acceptor and donor positions and the effect of the aromaticity have been studied. The results shown here match perfectly with the qualitative expectations derived from the resonance models. In addition, they provide a quantitative picture of the role played by the pi-electron delocalization on the relative strength of intramolecular hydrogen bonds.

摘要

利用多中心离域分析对π电子离域辅助的分子内氢键的具体情况进行了深入研究。π电子离域对分子内氢键强度的影响通过在B3LYP/6 - 311++G(d,p)理论水平下计算的“开放”和“封闭”结构的相对分子能量来确定。将这些相对能量与多中心电子离域指数和共价氢键指数的变化进行比较,结果表明它们与所研究的分子内氢键的相对强度具有很好的相关性。多中心电子离域指数和共价键指数是使用分子中的原子量子理论方法计算得出的。氢键以氧、氮或硫作为受体原子形成,这些原子也是被认为与供体氢相连的原子。以丙二醛为参考;研究了在受体和供体位置用其他原子取代氧以及芳香性的影响。此处所示结果与从共振模型得出的定性预期完美匹配。此外,它们提供了一幅关于π电子离域在分子内氢键相对强度中所起作用的定量图景。

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