Department of Chemistry, University of New Orleans, New Orleans, LA 70148, USA.
Phys Chem Chem Phys. 2013 Jul 21;15(27):11178-89. doi: 10.1039/c3cp00054k. Epub 2013 Feb 28.
A σ-hole bond is a noncovalent interaction between a covalently-bonded atom of Groups IV-VII and a negative site, e.g. a lone pair of a Lewis base or an anion. It involves a region of positive electrostatic potential, labeled a σ-hole, on the extension of one of the covalent bonds to the atom. The σ-hole is due to the anisotropy of the atom's charge distribution. Halogen bonding is a subset of σ-hole interactions. Their features and properties can be fully explained in terms of electrostatics and polarization plus dispersion. The strengths of the interactions generally correlate well with the magnitudes of the positive and negative electrostatic potentials of the σ-hole and the negative site. In certain instances, however, polarizabilities must be taken into account explicitly, as the polarization of the negative site reaches a level that can be viewed as a degree of dative sharing (coordinate covalence). In the gas phase, σ-hole interactions with neutral bases are often thermodynamically unfavorable due to the relatively large entropy loss upon complex formation.
σ 空穴键是 IV-VII 族共价键合原子与负电荷点(例如路易斯碱的孤对电子或阴离子)之间的非共价相互作用。它涉及共价键之一向原子延伸的正静电势能区域,标记为 σ 空穴。σ 空穴是由于原子电荷分布的各向异性引起的。卤素键合是 σ 空穴相互作用的一个子集。它们的特征和性质可以用静电和极化加色散来完全解释。相互作用的强度通常与 σ 空穴和负电荷点的正静电势和负静电势的大小很好地相关。然而,在某些情况下,必须明确考虑极化率,因为负电荷点的极化达到可以视为一定程度的给予共享(配位共价)的水平。在气相中,由于形成配合物时相对较大的熵损失,与中性碱基的 σ 空穴相互作用通常在热力学上是不利的。