Becke Axel D, Johnson Erin R
Department of Chemistry, Queen's University, Kingston, Ontario, Canada.
J Chem Phys. 2006 Jan 7;124(1):14104. doi: 10.1063/1.2139668.
In recent publications [A. D. Becke and E. R. Johnson, J. Chem. Phys. 122, 154104 (2005); E. R. Johnson and A. D. Becke 123, 024101 (2005)] we have demonstrated that the position-dependent dipole moment of the exchange hole can be used to generate dispersion interactions between closed-shell systems. Remarkably accurate C6 coefficients and intermolecular potential-energy surfaces can be obtained from Hartree-Fock occupied orbitals and polarizability data alone. In the present work, our model is extended to predict C8 and C10 coefficients as well. These higher-order coefficients are obtained as easily as C6 and with comparable accuracy.
在最近的出版物中[A. D. 贝克和E. R. 约翰逊,《化学物理杂志》122, 154104 (2005); E. R. 约翰逊和A. D. 贝克123, 024101 (2005)],我们已经证明,交换空穴的位置相关偶极矩可用于产生闭壳层体系之间的色散相互作用。仅从哈特里-福克占据轨道和极化率数据就能获得非常精确的C6系数和分子间势能面。在本工作中,我们的模型也被扩展以预测C8和C10系数。这些高阶系数与C6系数一样容易获得,且精度相当。