Zhu Yulan, Zhou Shuyu, Kan Yuhe, Yan Likai, Su Zhongmin
Jiangsu Province Key Laboratory for Chemistry of Low-dimensional Materials, Department of Chemistry, Huaiyin Teachers College, Huaian, Jiangsu 223300, People's Republic of China.
J Chem Phys. 2007 Jun 28;126(24):245106. doi: 10.1063/1.2749513.
Density functional theory is carried out to study cis-doubly N-confused porphyrin and its metal (Cu3+, Ag3+, and Au3+) complexes. The electronic structures and bonding situations of these molecules have been investigated by using the natural bond orbital analysis and the topological analysis of the electron localization function. We have studied the electronic spectra of cis-doubly N-confused porphyrin and its metal complexes with time-dependent density functional theory. The introduction of group 11 transition metals leads to blueshifts of their electronic spectra with respect to that of cis-doubly N-confused porphyrin. In particular, the absorption spectra of the copper complex show some weak Q bands that mainly arise from a combination of ligand-to-metal charge transfer and ligand-to-ligand charge transfer transitions. The relativistic time-dependent density functional theory with spin-orbit coupling calculations indicates that the effects of spin-orbit coupling on the excitation energies of the copper and silver complexes are so small that it is safe enough to neglect spin-orbit interactions for these two complexes. However, it has a significant effect on the absorption spectra of the gold complex.
采用密度泛函理论研究顺式双氮杂卟啉及其金属(Cu3+、Ag3+和Au3+)配合物。利用自然键轨道分析和电子定域函数的拓扑分析研究了这些分子的电子结构和键合情况。我们用时变密度泛函理论研究了顺式双氮杂卟啉及其金属配合物的电子光谱。第11族过渡金属的引入导致其电子光谱相对于顺式双氮杂卟啉发生蓝移。特别是,铜配合物的吸收光谱显示出一些弱的Q带,这些Q带主要源于配体到金属的电荷转移和配体到配体的电荷转移跃迁的组合。包含自旋轨道耦合计算的相对论时变密度泛函理论表明,自旋轨道耦合对铜和银配合物激发能的影响非常小,以至于忽略这两种配合物的自旋轨道相互作用是足够安全的。然而,它对金配合物的吸收光谱有显著影响。