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Ill-advised self-interaction contribution in modelling anionic attack along a reaction path

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Version 2 2016-01-20, 17:45
Version 1 2016-01-20, 17:45
journal contribution
posted on 2016-01-20, 17:45 authored by Walid Lamine, Salima Boughdiri, Lorraine Christ, Christophe Morell, Henry Chermette

It is shown that modelling a catalytic reaction involving an atomic anion, such as iodide, may lead to unrealistic reaction paths because of the underestimation of the anion energy. The self-interaction error, at the origin of this feature is enhanced by the fact that electronic delocalisation, usually overestimated in DFT calculations, cannot occur in a single atom. The quantification of this error is approached by a linear transit calculation, from a transition state towards separate fragments. This is an efficient way to correct this error for GGA functionals. Interestingly the self-interaction error is shown to be less dependent of the Hartree–Fock exchange amount in hybrid functionals than expected. Unexpectedly, no significant improvement with long-range corrected functionals is obtained.

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