Pennanen Teemu O, Vaara Juha
Laboratory of Physical Chemistry, Department of Chemistry, P.O. Box 55 (A.I. Virtasen aukio 1), FIN-00014 University of Helsinki, Finland.
J Chem Phys. 2005 Nov 1;123(17):174102. doi: 10.1063/1.2079947.
Terms arising from the relativistic spin-orbit effect on both hyperfine and Zeeman interactions are introduced to density-functional theory calculation of nuclear magnetic shielding in paramagnetic molecules. The theory is a generalization of the former nonrelativistic formulation for doublet systems and is consistent to O(alpha4), the fourth power of the fine structure constant, for the spin-orbit terms. The new temperature-dependent terms arise from the deviation of the electronic g tensor from the free-electron g value as well as spin-orbit corrections to hyperfine coupling tensor A, the latter introduced in the present work. In particular, the new contributions include a redefined isotropic pseudocontact contribution that consists of effects due to both the g tensor and spin-orbit corrections to hyperfine coupling. The implementation of the spin-orbit terms makes use of all-electron atomic mean-field operators and/or spin-orbit pseudopotentials. Sample results are given for group-9 metallocenes and a nitroxide radical. The new O(alpha4) corrections are found significant for the metallocene systems while they obtain small values for the nitroxide radical. For the isotropic shifts, none of the three beyond-leading-order hyperfine contributions are negligible.
将超精细和塞曼相互作用的相对论自旋轨道效应产生的项引入到顺磁分子中核磁共振屏蔽的密度泛函理论计算中。该理论是对先前双重态系统非相对论公式的推广,对于自旋轨道项,与精细结构常数的四次方O(α⁴)一致。新的与温度相关的项源于电子g张量与自由电子g值的偏差以及对超精细耦合张量A的自旋轨道修正,后者是在本工作中引入的。特别地,新的贡献包括重新定义的各向同性赝接触贡献,它由g张量和对超精细耦合的自旋轨道修正两者的效应组成。自旋轨道项的实现利用了全电子原子平均场算符和/或自旋轨道赝势。给出了第9族金属茂和一个氮氧自由基的示例结果。发现新的O(α⁴)修正对于金属茂体系很显著,而对于氮氧自由基它们的值很小。对于各向同性位移,三个超出领先阶的超精细贡献中没有一个可以忽略。