Jacquemin Denis, Perpète Eric A, Medved' Miroslav, Scalmani Giovanni, Frisch Michael J, Kobayashi Rika, Adamo Carlo
Laboratoire de Chimie Théorique Appliquée, Group de Chimie-Physique Théorique et Structurale, Facultés Universitaires Notre-Dame de la Paix, rue de Bruxelles, 61, B-5000 Namur, Belgium.
J Chem Phys. 2007 May 21;126(19):191108. doi: 10.1063/1.2741246.
Using the long-range corrected (LC) density functional theory (DFT) scheme introduced by Iikura et al. [J. Chem. Phys. 115, 3540 (2001)] and the Coulomb-attenuating model (CAM-B3LYP) of Yanai et al. [Chem. Phys. Lett. 393, 51 (2004)], we have calculated the longitudinal dipole moments and static electronic first hyperpolarizabilities of increasingly long polymehtineimine oligomers. For comparison purposes Hartree-Fock (HF), Moller-Plesset perturbation theory (MP2), and conventional pure and hybrid functionals have been considered as well. HF, generalized gradient approximation (GGA), and conventional hybrids provide too large dipole moments for long oligomers, while LC-DFT allows to reduce the discrepancy with respect to MP2 by a factor of 3. For the first hyperpolarizability, the incorrect evolution with the chain length predicted by HF is strongly worsened by BLYP, Perdew-Burke-Ernzerhof (PBE), and also by B3LYP and PBE0. On the reverse, LC-BLYP and LC-PBE hyperpolarizabilities are correctly predicted to be positive (but for the two smallest chains). Indeed, for medium and long oligomers LC hyperpolarizabilities are slightly smaller than MP2 hyperpolarizabilities, as it should be. CAM-B3LYP also strongly improves the B3LYP results, though a bit less impressively for small chain lengths. The present study demonstrates the efficiency of long-range DFT, even in very pathological cases.
我们使用Iikura等人[《化学物理杂志》115, 3540 (2001)]提出的长程校正(LC)密度泛函理论(DFT)方案以及Yanai等人[《化学物理快报》393, 51 (2004)]的库仑衰减模型(CAM - B3LYP),计算了越来越长的聚亚甲基亚胺低聚物的纵向偶极矩和静态电子第一超极化率。为了进行比较,还考虑了哈特里 - 福克(HF)、莫勒 - 普莱塞特微扰理论(MP2)以及传统的纯泛函和杂化泛函。对于长的低聚物,HF、广义梯度近似(GGA)和传统杂化泛函给出的偶极矩过大,而LC - DFT能够将与MP2的差异减小到三分之一。对于第一超极化率,HF预测的随链长的错误演化被BLYP、佩德韦 - 伯克 - 恩泽霍夫(PBE)以及B3LYP和PBE0严重恶化。相反,LC - BLYP和LC - PBE的超极化率被正确预测为正值(除了两条最短的链)。实际上,对于中等长度和长的低聚物,LC超极化率略小于MP2超极化率,这是合理的。CAM - B3LYP也显著改善了B3LYP的结果,尽管对于短链长度的改善效果稍逊一筹。本研究证明了长程DFT的有效性,即使在非常极端的情况下也是如此。