arXiv · 1403.1671
Ions in solution: Density Corrected Density Functional Theory (DC-DFT)
Abstract
Standard density functional approximations often give questionable results for odd-electron radical complexes, with the error typically attributed to self-interaction. In density corrected density functional theory (DC-DFT), certain classes of density functional theory calculations are significantly improved by using densities more accurate than the self-consistent densities. We discuss how to identify such cases, and how DC-DFT applies more generally. To illustrate, we calculate potential energy surfaces of HO$\cdot$Cl$^-$ and HO$\cdot$H$_2$O complexes using various common approximate functionals, with and without this density correction. Commonly used approximations yield wrongly shaped surfaces and/or incorrect minima when calculated self consistently, while yielding almost identical shapes and minima when density corrected. This improvement is retained even in the presence of implicit solvent.
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Min-Cheol Kim, Eunji Sim, Kieron Burke. 2014-03-07. Ions in solution: Density Corrected Density Functional Theory (DC-DFT). https://doi.org/10.1063/1.4869189
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