Zimmerli Urs, Parrinello Michele, Koumoutsakos Petros
Institute of Computational Science, Department of Computer Science, Swiss Federal Institute of Technology, 8092 Zurich, Switzerland.
J Chem Phys. 2004 Feb 8;120(6):2693-9. doi: 10.1063/1.1637034.
We investigate recently published methods for extending density functional theory to the description of long-range dispersive interactions. In all schemes an empirical correction consisting of a C6r(-6) term is introduced that is damped at short range. The coefficient C6 is calculated either from average molecular or atomic polarizabilities. We calculate geometry-dependent interaction energy profiles for the water benzene cluster and compare the results with second-order Møller-Plesset calculations. Our results indicate that the use of the B3LYP functional in combination with an appropriate mixing rule and damping function is recommended for the interaction of water with aromatics.
我们研究了最近发表的将密度泛函理论扩展到长程色散相互作用描述的方法。在所有方案中,都引入了一个由C6r(-6)项组成的经验校正项,该项在短程范围内被阻尼。系数C6要么从平均分子极化率计算得出,要么从平均原子极化率计算得出。我们计算了水 - 苯团簇的几何相关相互作用能曲线,并将结果与二阶Møller-Plesset计算结果进行比较。我们的结果表明,对于水与芳烃的相互作用,建议使用B3LYP泛函并结合适当的混合规则和阻尼函数。