South Ural State University, Chemistry Department, Lenin Avenue 76, Chelyabinsk, 454080, Russia.
Phys Chem Chem Phys. 2013 Feb 21;15(7):2530-8. doi: 10.1039/c2cp43416d. Epub 2013 Jan 16.
The polarization effects associated with halogen bonding for the series of charge-transfer complexes D(m)···X-Y, where donor molecules D(m) = NH(3), H(2)O, H(2)S, C(2)H(4), CO and X-Y = Cl(2), ClF, Br(2), BrCl, ICl, I(2), are characterized in terms of the quantum theory of atoms in molecules using the B3LYP/6-311** Kohn-Sham wave functions. We study the electrostatic potential features of separate donor and acceptor molecules, the change in atomic charges as well as the atomic electric dipole moments and their components, and the intra-atomic electron density dipole polarization and the bonding dipole moments resulting from the electron density redistribution between the molecules in the charge-transfer complexes. The equation linking the most negative electrostatic potential values in the donor molecules and the most positive values in dihalogen molecules with the stretching force constants was found using two-factor regression. It is demonstrated that the dipole polarization of the acceptor atom mirrors the strength of halogen bonding in complexes in a series of different donors and acceptors. An exponential relationship between the magnitude of the total atomic electric dipole moment of the acceptor atom and the intermolecular stretching force constant is established for weakly bounded complexes.
采用分子轨道理论中的 B3LYP/6-311** Kohn-Sham 波函数,研究了一系列电荷转移复合物 D(m)···X-Y(其中供体分子 D(m) = NH(3)、H(2)O、H(2)S、C(2)H(4)、CO,X-Y = Cl(2)、ClF、Br(2)、BrCl、ICl、I(2))中与卤素键合相关的极化效应。我们研究了单独的供体和受体分子的静电势能特征、原子电荷变化以及原子电偶极矩及其分量,以及分子内电子密度偶极子极化和键合偶极矩,这些都是由电荷转移复合物中分子间电子密度重新分布引起的。使用双因素回归法找到了将供体分子中最负静电势能值和二卤分子中最正静电势能值与伸缩力常数联系起来的方程。结果表明,在一系列不同的供体和受体中,受体原子的偶极子极化反映了卤键合的强度。对于弱结合复合物,建立了受体原子总原子电偶极矩与分子间伸缩力常数之间的指数关系。