The shortcomings of semi-local and hybrid functionals: what we can learn from surface science studies
A. Stroppa, G. Kresse

TL;DR
This study compares various density functionals in surface science, revealing that hybrid functionals like HSE improve site prediction but overestimate energies, while BLYP and B3LYP excel in adsorption energies but poorly predict bulk properties.
Contribution
The paper provides a comprehensive analysis of semi-local and hybrid functionals in surface adsorption, highlighting their strengths and limitations for different properties.
Findings
HSE predicts correct site order but overestimates energies
BLYP and B3LYP give accurate adsorption energies and sites
No functional accurately describes all properties
Abstract
A study of the adsorption of CO on late 4d and transition metal (111) surfaces (Ru, Rh, Pd, Ag, Os, Ir, and Pt) considering atop and hollow site adsorption is presented. The applied functionals include the gradient corrected PBE and BLYP functional, and the corresponding hybrid Hartree-Fock density functionals HSE and B3LYP. We find that PBE based hybrid functionals (specifically HSE) yield, with the exception of Pt, the correct site order on all considered metals, but they also considerably overestimate the adsorption energies compared to experiment. On the other hand, the semi-local BLYP functional and the corresponding hybrid functional B3LYP yield very satisfactory adsorption energies and the correct adsorption site for all surfaces. We are thus faced with a Procrustean problem: the B3LYP and BLYP functionals seem to be the overall best choice for describing adsorption on metal…
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