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Optimizing the $U_{eff}$ value for DFT+U calculation of paramagnetic solid-state NMR shifts by double Fermi-contact-shift verification

Chemical Physics 2019-10-23 v1 Materials Science

Abstract

The isotropic chemical shifts can be calculated either by full-electron configuration, or by hybrid functionals, which costs a large amount of computational resources. To save the time, DFT+U could be employed to calculate the isotropic chemical shifts. However, the calculated properties are very sensitive to the Hubbard correction value UeffU_{eff}. Here the double Fermi-contact-shift verification approach with DFT+U method is proposed with much higher computational efficiency, that is, simultaneously calculate the Fermi-contact shifts on two nuclei (6Li^{6}Li and 17O^{17}O) to predict the optimal UeffU_{eff}. The optimal UeffU_{eff} is also helpful to the calculations of quadrupolar coupling constant CQC_{Q}, gg-factor, band structure and density of states.

Keywords

Cite

@article{arxiv.1907.10276,
  title  = {Optimizing the $U_{eff}$ value for DFT+U calculation of paramagnetic solid-state NMR shifts by double Fermi-contact-shift verification},
  author = {Y. Liu and L. Zeng and C. Xu and F. Geng and M. Shen and Q. Yuan and B. Hu},
  journal= {arXiv preprint arXiv:1907.10276},
  year   = {2019}
}