Indian Institute of Astrophysics, Bangalore 560034, India.
J Chem Phys. 2011 Aug 28;135(8):084118. doi: 10.1063/1.3627153.
The improved virtual orbital-complete active space configuration interaction (IVO-CASCI) method is applied to determine the geometries of the ground state of free-base porphin and its metal derivatives, magnesium and zinc porphyrins. The vertical excitation energies and ionization potentials are computed at these optimized geometries using an IVO-based version of multireference Möller-Plesset (IVO-MRMP) perturbation theory. The geometries and excitation energies obtained from the IVO-CASCI and IVO-MRMP methods agree well with experiment and with other correlated many-body methods. We also provide the ground state vibrational frequencies for free-base porphin and Mg-porphyrin. All frequencies are real in contrast to self-consistent field treatments which yield an imaginary frequency. Ground state normal mode frequencies (scaled) of free-base porphin and magnesium porphyrin from IVO-CASCI and complete active space self-consistent field methods are quite similar and are consistent with Becke-Slater-Hartree-Fock exchange and Lee-Yang-Parr correlation density functional theory calculations and with experiment. In addition, geometries are determined for low-lying excited state triplets and for positive ion states of the molecules. To our knowledge, no prior experimental and theoretical data are available for these excited state geometries of magnesium and zinc porphyrins. Given that the IVO-CASCI and IVO-MRMP computed geometries and excitation energies agree favorably with experiment and with available theoretical data, our predicted excited state geometries should be equally accurate.
改进的虚拟轨道全活性空间组态相互作用(IVO-CASCI)方法被应用于确定自由碱基卟啉及其金属衍生物镁和锌卟啉的基态几何形状。在这些优化的几何形状上,使用基于 IVO 的多参考 Möller-Plesset(IVO-MRMP)微扰理论计算垂直激发能和电离势。IVO-CASCI 和 IVO-MRMP 方法得到的几何形状和激发能与实验和其他相关多体方法吻合得很好。我们还为自由碱基卟啉和 Mg-卟啉提供了基态振动频率。与自洽场处理相比,所有频率都是实的,自洽场处理会产生虚频率。IVO-CASCI 和完全活性空间自洽场方法的自由碱基卟啉和镁卟啉的基态正则模态频率(缩放)非常相似,与 Becke-Slater-Hartree-Fock 交换和 Lee-Yang-Parr 相关密度泛函理论计算以及实验结果一致。此外,还确定了分子的低激发三重态和正离子态的几何形状。据我们所知,这些镁和锌卟啉的激发态几何形状以前没有实验和理论数据。鉴于 IVO-CASCI 和 IVO-MRMP 计算的几何形状和激发能与实验和现有理论数据吻合良好,我们预测的激发态几何形状应该同样准确。