Department of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.
J Chem Phys. 2012 Jan 7;136(1):014108. doi: 10.1063/1.3671390.
We report the implementation of nuclear magnetic resonance (NMR) shielding tensors within the four-component relativistic Kohn-Sham density functional theory including non-collinear spin magnetization and employing London atomic orbitals to ensure gauge origin independent results, together with a new and efficient scheme for assuring correct balance between the large and small components of a molecular four-component spinor in the presence of an external magnetic field (simple magnetic balance). To test our formalism we have carried out calculations of NMR shielding tensors for the HX series (X = F, Cl, Br, I, At), the Xe atom, and the Xe dimer. The advantage of simple magnetic balance scheme combined with the use of London atomic orbitals is the fast convergence of results (when compared with restricted kinetic balance) and elimination of linear dependencies in the basis set (when compared to unrestricted kinetic balance). The effect of including spin magnetization in the description of NMR shielding tensor has been found important for hydrogen atoms in heavy HX molecules, causing an increase of isotropic values of 10%, but negligible for heavy atoms.
我们报告了在包括非共线自旋磁化强度的四分量相对论 Kohn-Sham 密度泛函理论中实现核磁共振(NMR)屏蔽张量,并采用伦敦原子轨道以确保结果与规范原点无关,同时还采用了一种新的有效方案,以确保在外磁场存在下分子四分量旋量的大分量和小分量之间的正确平衡(简单磁平衡)。为了测试我们的形式,我们对 HX 系列(X = F、Cl、Br、I、At)、Xe 原子和 Xe 二聚体进行了 NMR 屏蔽张量的计算。简单磁平衡方案与伦敦原子轨道的结合使用具有快速收敛的优点(与受限动力学平衡相比),并且消除了基组中的线性相关性(与无约束动力学平衡相比)。在描述 NMR 屏蔽张量时包括自旋磁化的效果对于重 HX 分子中的氢原子非常重要,导致各向同性值增加 10%,但对于重原子则可以忽略不计。