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Zero-field splitting in nickel(II) complexes: A comparison of DFT and multi-configurational wavefunction calculations

机译:镍(II)配合物的零场分裂:DFT和多构型波函数计算的比较

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摘要

The zero-field splitting (ZFS) is an important quantity in the electron spin Hamiltonian for S = 1 or higher. We report calculations of the ZFS in some six- and five-coordinated nickel(II) complexes (S = 1), using different levels of theory within the framework of the ORCA program package [F. Neese, Wiley Interdiscip. Rev.: Comput. Mol. Sci. 2, 73 (2012)]10.1002/wcms.81. We compare the high-end ab initio calculations (complete active space self-consistent field and n-electron valence state perturbation theory), making use of both the second-order perturbation theory and the quasi-degenerate perturbation approach, with density functional theory (DFT) methods using different functionals. The pattern of results obtained at the ab initio levels is quite consistent and in reasonable agreement with experimental data. The DFT methods used to calculate the ZFS give very strongly functional-dependent results and do not seem to function well for our systems.
机译:对于S = 1或更高,零场分裂(ZFS)是电子自旋哈密顿量中的重要量。我们报告了在ORCA程序包框架内使用不同水平的理论对一些六配位和五配位的镍(II)配合物(S = 1)进行ZFS的计算。 Neese,威利跨学科。修订:计算机。大声笑科学2,73(2012)] 10.1002 / wcms.81。我们比较了高端的从头算式(完整的有源空间自洽场和n电子价态扰动理论),同时使用了二阶扰动理论和准简并扰动方法以及密度泛函理论( DFT)方法使用不同的功能。从头开始水平获得的结果模式非常一致,并且与实验数据合理吻合。用于计算ZFS的DFT方法给出了非常依赖于功能的结果,并且似乎对于我们的系统而言效果不佳。

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