College of Chemistry and Material Science, Hebei Normal University, Shijiazhuang 050024, PR China.
Chemphyschem. 2013 Jun 3;14(8):1591-600. doi: 10.1002/cphc.201300075. Epub 2013 Mar 28.
The influences of the Li···π interaction of C6H6···LiOH on the H···π interaction of C6H6···HOX (X=F, Cl, Br, I) and the X···π interaction of C6H6···XOH (X=Cl, Br, I) are investigated by means of full electronic second-order Møller-Plesset perturbation theory calculations and "quantum theory of atoms in molecules" (QTAIM) studies. The binding energies, binding distances, infrared vibrational frequencies, and electron densities at the bond critical points (BCPs) of the hydrogen bonds and halogen bonds prove that the addition of the Li···π interaction to benzene weakens the H···π and X···π interactions. The influences of the Li···π interaction on H···π interactions are greater than those on X···π interactions; the influences of the H···π interactions on the Li···π interaction are greater than X···π interactions on Li···π interaction. The greater the influence of Li···π interaction on H/X···π interactions, the greater the influences of H/X···π interactions on Li···π interaction. QTAIM studies show that the intermolecular interactions of C6H6···HOX and C6H6···XOH are mainly of the π type. The electron densities at the BCPs of hydrogen bonds and halogen bonds decrease on going from bimolecular complexes to termolecular complexes, and the π-electron densities at the BCPs show the same pattern. Natural bond orbital analyses show that the Li···π interaction reduces electron transfer from C6 H6 to HOX and XOH.
通过全电子二级 Møller-Plesset 微扰理论计算和“原子在分子中的量子理论”(QTAIM)研究,考察了 C6H6···LiOH 中 Li···π 相互作用对 C6H6···HOX(X=F、Cl、Br、I)中 H···π 相互作用和 C6H6···XOH(X=Cl、Br、I)中 X···π 相互作用的影响。氢键和卤键的结合能、结合距离、红外振动频率和键临界点(BCP)处的电子密度证明,Li···π 相互作用的加入削弱了 H···π 和 X···π 相互作用。Li···π 相互作用对 H···π 相互作用的影响大于对 X···π 相互作用的影响;H···π 相互作用对 Li···π 相互作用的影响大于 X···π 相互作用对 Li···π 相互作用的影响。Li···π 相互作用对 H/X···π 相互作用的影响越大,H/X···π 相互作用对 Li···π 相互作用的影响也越大。QTAIM 研究表明,C6H6···HOX 和 C6H6···XOH 的分子间相互作用主要是π型的。氢键和卤键 BCP 处的电子密度从双分子复合物到三聚体复合物逐渐减小,π 电子密度在 BCP 处也呈现出相同的模式。自然键轨道分析表明,Li···π 相互作用减少了 C6H6 向 HOX 和 XOH 的电子转移。