DFT+U calculations of doped La0.5Sr0.5CoO3 show that paramagnetic versus ferromagnetic states change oxygen vacancy formation energies in a dopant-specific way.
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First-principles analysis of the effect of magnetic states on the oxygen vacancy formation energy in doped La$_{0.5}$Sr$_{0.5}$CoO$_3$ perovskite
DFT+U calculations of doped La0.5Sr0.5CoO3 show that paramagnetic versus ferromagnetic states change oxygen vacancy formation energies in a dopant-specific way.