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On the accuracy of frozen density embedding calculations with hybrid and orbital-dependent functionals for non-bonded interaction energies

Academic Article
Publication Date:
2012
abstract:
We analyze the accuracy of the frozen density embedding (FDE) method, with hybrid and orbital-dependent exchange-correlation functionals, for the calculation of the total interaction energies of weakly interacting systems. Our investigation is motivated by the fact that these approaches require, in addition to the non-additive kinetic energy approximation, also approximate non-additive exact-exchange energies. Despite this further approximation, we find that the hybrid/orbital-dependent FDE approaches can reproduce the total energies with the same accuracy (about 1 mHa) as the one of conventional semi-local functionals. In many cases, thanks to error cancellation effects, hybrid/orbital-dependent approaches yield even the smallest error. A detailed energy-decomposition investigation is presented. Finally, the Becke-exchange functional is found to reproduce accurately the non-additive exact-exchange energies also for non-equilibrium geometries. These performances are rationalized in terms of a reduced-gradient decomposition of the non-additive exchange energy.
Iris type:
01.01 Articolo in rivista
Keywords:
embedding; frozen-density embedding; fde; hybrid functionals; subsystem dft
List of contributors:
Fabiano, Eduardo; DELLA SALA, Fabio
Authors of the University:
DELLA SALA FABIO
FABIANO EDUARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/224129
Published in:
JOURNAL OF CHEMICAL PHYSICS ONLINE
Journal
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URL

http://dx.doi.org/10.1063/1.4730748
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