Computer-Chemie-Zentrum, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.
J Mol Model. 2012 Jun;18(6):2461-9. doi: 10.1007/s00894-011-1263-5. Epub 2011 Oct 21.
The strong collinear polarizability of the A-H bond in A-H···B hydrogen bonds is shown to lead to an enhanced σ-hole on the donor hydrogen atom and hence to stronger hydrogen bonding. This effect helps to explain the directionality of hydrogen bonds, the well known cooperative effect in hydrogen bonding, and the occurrence of blue-shifting. The latter results when significant additional electron density is shifted into the A-H bonding region by the polarization effect. The shift in the A-H stretching frequency is shown to depend essentially linearly on the calculated atomic charge on the donor hydrogen for all donors in which A belongs to the same row of the periodic table. A further result of the polarization effect, which is also expected for other σ-hole bonds, is that the strength of the non-covalent interaction depends strongly on external electric fields.
A-H 键的强共线极化率表明,A-H···B 氢键中存在增强的 σ 空穴,从而导致更强的氢键。这种效应有助于解释氢键的方向性、氢键中众所周知的协同效应以及蓝移现象的发生。当极化效应将显著的额外电子密度转移到 A-H 键区域时,就会产生蓝移。结果表明,对于所有 A 属于元素周期表同一行的供体,A-H 伸缩振动频率的位移基本上与供体氢原子的计算原子电荷线性相关。极化效应的另一个结果是,非共价相互作用的强度强烈依赖于外部电场,这也预计适用于其他 σ 空穴键。