Akter Sharmin, Vargas Jorge A, Sharkas Kamal, Peralta Juan E, Jackson Koblar A, Baruah Tunna, Zope Rajendra R
Computational Science Program, The University of Texas at El Paso, El Paso, Texas 79968, USA.
Phys Chem Chem Phys. 2021 Sep 14;23(34):18678-18685. doi: 10.1039/d0cp06512a. Epub 2021 Aug 18.
We examine the effect of removing self-interaction error (SIE) on the calculation of molecular polarizabilities in the local spin density (LSDA) and generalized gradient approximations (GGA). To this end, we utilize a database of 132 molecules taken from a recent benchmark study [Hait and Head-Gordon, Phys. Chem. Chem. Phys., 2018, 20, 19800] to assess the influence of SIE on polarizabilities by comparing results with accurate reference data. Our results confirm that the general overestimation of molecular polarizabilities by these density functional approximations can be attributed to SIE. However, removing SIE using the Perdew-Zunger self-interaction-correction (PZ-SIC) method, implemented using the Fermi-Löwdin Orbital SIC approach, leads to an underestimation of molecular polarizabilities, showing that PZ-SIC overcorrects when combined with LSDA or GGA. Application of a recently proposed locally scaled SIC [Zope, et al., J. Chem. Phys., 2019, 151, 214108] is found to provide more accurate polarizabilities. We attribute this to the ability of the local scaling scheme to selectively correct for SIE in the regions of space where the correction is needed most.
我们研究了消除自相互作用误差(SIE)对局部自旋密度近似(LSDA)和广义梯度近似(GGA)中分子极化率计算的影响。为此,我们利用了一个包含132个分子的数据库,该数据库取自最近的一项基准研究[海特和黑德 - 戈登,《物理化学化学物理》,2018年,20,19800],通过将结果与精确的参考数据进行比较来评估SIE对极化率的影响。我们的结果证实,这些密度泛函近似对分子极化率的普遍高估可归因于SIE。然而,使用通过费米 - 洛丁轨道自相互作用校正方法实现的佩德韦 - 曾格自相互作用校正(PZ - SIC)方法消除SIE,会导致分子极化率被低估,这表明PZ - SIC与LSDA或GGA结合时校正过度。结果发现,应用最近提出的局部缩放自相互作用校正[佐普等人,《化学物理杂志》,2019年,151,214108]能提供更准确的极化率。我们将此归因于局部缩放方案能够在最需要校正的空间区域选择性地校正SIE。