Becke Axel D, Johnson Erin R
Department of Chemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada.
J Chem Phys. 2005 Oct 15;123(15):154101. doi: 10.1063/1.2065267.
We have recently introduced [J. Chem. Phys. 122, 154104 (2005)] a simple parameter-free model of the dispersion interaction based on the instantaneous in space, dipole moment of the exchange hole. The model generates remarkably accurate interatomic and intermolecular C6 dispersion coefficients, and geometries and binding energies of intermolecular complexes. The model involves, in its original form, occupied Hartree-Fock or Kohn-Sham orbitals. Here we present a density-functional reformulation depending only on total density, the gradient and Laplacian of the density, and the kinetic-energy density. This density-functional model performs as well as the explicitly orbital-dependent model, yet offers obvious computational advantages.
我们最近引入了[《化学物理杂志》122, 154104 (2005)]一种基于交换空穴在空间中的瞬时偶极矩的简单无参数色散相互作用模型。该模型能生成非常精确的原子间和分子间C6色散系数,以及分子间复合物的几何结构和结合能。该模型的原始形式涉及已占据的哈特里 - 福克或科恩 - 沙姆轨道。在此,我们提出一种仅依赖于总密度、密度的梯度和拉普拉斯算子以及动能密度的密度泛函重新表述。这种密度泛函模型与明确依赖轨道的模型表现相当,但具有明显的计算优势。